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Basic-Leucine Zipper Transcription Factors (15):
  • Proto-Oncogene Proteins c-fos
  • Cyclic AMP Response Element Modulator
  • NF-E2-Related Factor 2
  • NF-E2-Related Factor 1
  • NF-E2 Transcription Factor
  • Maf Transcription Factors
  • Cyclic AMP Response Element-Binding Protein A
  • Activating Transcription Factors
  • Fos-Related Antigen-2
  • Cyclic AMP Response Element-Binding Protein
  • Transcription Factor AP-1
  • Interferon Regulatory Factor-1
  • CCAAT-Enhancer-Binding Proteins
  • Proto-Oncogene Proteins c-jun
  • Basic Helix-Loop-Helix Leucine Zipper Transcription Factors
Home > Amino Acids, Peptides, and Proteins > Proteins > Transcription Factors > Basic-Leucine Zipper Transcription Factors

Recent article

Basic-Leucine Zipper Transcription Factors

Audio, Transactions of the IRE Professional Group on (14)12 2011
Identification of senescence-associated genes and their networks under oxidative stress by the analysis of Bach1.
Kazushige K Ota, Yoshihiro Y Dohi, Andrey A Brydun, Ayako A Nakanome, Sadayoshi S Ito and Kazuhiko K Igarashi
Abstract
Our elucidations contrast with previous reports describing monopolistic regulations of senescence by single p53 target genes.... | PMID: 21110788

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EMBO Journal (29)23 2010
Bach2 represses plasma cell gene regulatory network in B cells to promote antibody class switch.
Akihiko Muto, Kyoko Ochiai, Yoshitaka Kimura, Ari Itoh-Nakadai, Kathryn L Calame, Dai Ikebe, Satoshi Tashiro and Kazuhiko Igarashi
Abstract
Two transcription factors, Pax5 and Blimp-1, form a gene regulatory network (GRN) with a double-negative loop, which defines either B-cell (Pax5 high) or plasma cell (Blimp-1 high) status as a binary switch. However, it is unclear how this B-cell GRN registers class switch DNA recombination (CSR), a... | PMID: 20953163

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Eukaryotic Cell (9)11 2010
Aspergillus fumigatus flbB encodes two basic leucine zipper domain (bZIP) proteins required for proper asexual development and gliotoxin production.
Peng Xiao, Kwang-Soo Shin, Tianhong Wang and Jae-Hyuk Yu
Abstract
We characterize the upstream developmental regulator A. fumigatus flbB (AfuflbB). Northern blotting and cDNA analyses reveal that AfuflbB produces two transcripts predicted to encode two basic leucine zipper domain (bZIP) polypeptides, AfuFlbBβ (420 amino acids [aa]) and AfuFlbBα (390 aa). The del... | PMID: 20852021

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RNA (285)33 2010
Sumoylation of bZIP transcription factor NRL modulates target gene expression during photoreceptor differentiation.
Jerome E JE Roger, Jacob J Nellissery, Douglas S DS Kim and Anand A Swaroop
Abstract
We identified putative sites of post-translational modification in the NRL protein by in silico analysis. Here, we demonstrate the sumoylation of NRL in vivo and in vitro, with two small ubiquitin-like modifier (SUMO) molecules attached to the Lys-20 residue. NRL-K20R and NRL-K20R/K24R sumoylation m... | PMID: 20551322

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Developmental Cell (19)2 2010
The cytokinin-activated transcription factor ARR2 promotes plant immunity via TGA3/NPR1-dependent salicylic acid signaling in Arabidopsis.
Jaemyung Choi, Sung Un Huh, Mikiko Kojima, Hitoshi Sakakibara, Kyung-Hee Paek and Ildoo Hwang
Abstract
We found that plant-derived cytokinins promote resistance of Arabidopsis to Pseudomonas syringae pv. tomato DC3000 (Pst). Modulated cytokinin levels or signaling activity in CKX- or IPT-overexpressing plants or in ahk2 ahk3 mutants correlated with altered resistance. In fact, the cytokinin-activated... | PMID: 20708590

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Plant Biotechnology Journal (8)6 2010
Analysis of ER stress in developing rice endosperm accumulating beta-amyloid peptide.
Youko Oono, Yuhya Wakasa, Sakiko Hirose, Lijun Yang, Chiyoko Sakuta and Fumio Takaiwa
Abstract
We expressed Abeta peptide as a new causing agent to endoplasmic reticulum (ER) stress to study ER stress occurred in plant. When the dimer of Abeta(1-42) peptide was expressed in maturing seed under the control of the 2.3-kb glutelin GluB-1 promoter containing its signal peptide, a maximum of about... | PMID: 20331531

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Molecular Oral Microbiology (25)4 2010
Human trophoblast responses to Porphyromonas gingivalis infection.
S D Riewe, J J Mans, T Hirano, J Katz, K T Shiverick, T A Brown and R J Lamont
Abstract
We investigated the transcriptional responses of human extravillous trophoblasts (HTR-8) to infection with P. gingivalis. Over 2000 genes were differentially regulated in HTR-8 cells by P. gingivalis. In ontology analyses of regulated genes, overpopulated biological pathways included mitogen-activat... | PMID: 20618699

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Journal of Biological Chemistry (285)29 2010
The eukaryotic initiation factor (eIF) 4G HEAT domain promotes translation re-initiation in yeast both dependent on and independent of eIF4A mRNA helicase.
Ryosuke Watanabe, Marcelo Jun Murai, Chingakham Ranjit Singh, Stephanie Fox, Miki Ii and Katsura Asano
Abstract
We show that the yeast eIF4G2 mutations altering eIF4E- and eIF4A-binding sites increase re-initiation at GCN4 and impair recognition of the start codons of uORF1 or uORF4 located after uORF1. The increase in re-initiation at GCN4 was partially suppressed by increasing the distance between uORF1 and... | PMID: 20463023

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Environmental and Molecular Mutagenesis (51)6 2010
Assessing the link between BACH1/FANCJ and MLH1 in DNA crosslink repair.
Sharon B Cantor and Jenny Xie
Abstract
We address the role of FANCJ and MLH1 in DNA crosslink processing and how their functions could be linked in checkpoint and/or recombination pathways. We speculate that after DNA crosslink processing and repair, the FANCJ/MLH1 interaction is critical for recovery and restart of replication. These id... | PMID: 20658644

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Yonsei Medical Journal (51)4 2010
Transcriptional regulation of T helper 17 cell differentiation.
Eun Sook Hwang
Abstract
The third lineage of T helper subsets, Th17, has recently been identified as an IL- 17-producing CD4+ Th cell, and its functions and regulatory mechanisms have been extensively characterized in immune responses. Functional studies have provided evidence that Th17 cells are important for the modulati... | PMID: 20499411

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Plant Cell Online (22)7 2010
A nitrogen response pathway regulates virulence functions in Fusarium oxysporum via the protein kinase TOR and the bZIP protein MeaB.
Manuel S López-Berges, Nicolas Rispail, Rafael C Prados-Rosales and Antonio Di Pietro
Abstract
We show that these virulence-related functions are repressed by the preferred nitrogen source ammonium and restored by treatment with l-methionine sulfoximine or rapamycin, two specific inhibitors of Gln synthetase and the protein kinase TOR, respectively. Deletion of the bZIP protein MeaB also resu... | PMID: 20639450

Large_pdficon_selected PDF is available here.
Plant Cell Online (22)7 2010
A nitrogen response pathway regulates virulence functions in Fusarium oxysporum via the protein kinase TOR and the bZIP protein MeaB.
Manuel S López-Berges, Nicolas Rispail, Rafael C Prados-Rosales and Antonio Di Pietro
Abstract
We show that these virulence-related functions are repressed by the preferred nitrogen source ammonium and restored by treatment with l-methionine sulfoximine or rapamycin, two specific inhibitors of Gln synthetase and the protein kinase TOR, respectively. Deletion of the bZIP protein MeaB also resu... | PMID: 20639450

Large_pdficon_selected PDF is available here.
Plant Cell Online (22)7 2010
A nitrogen response pathway regulates virulence functions in Fusarium oxysporum via the protein kinase TOR and the bZIP protein MeaB.
Manuel S López-Berges, Nicolas Rispail, Rafael C Prados-Rosales and Antonio Di Pietro
Abstract
We show that these virulence-related functions are repressed by the preferred nitrogen source ammonium and restored by treatment with l-methionine sulfoximine or rapamycin, two specific inhibitors of Gln synthetase and the protein kinase TOR, respectively. Deletion of the bZIP protein MeaB also resu... | PMID: 20639450

Large_pdficon_selected PDF is available here.
Plant Cell Online (22)7 2010
A nitrogen response pathway regulates virulence functions in Fusarium oxysporum via the protein kinase TOR and the bZIP protein MeaB.
Manuel S López-Berges, Nicolas Rispail, Rafael C Prados-Rosales and Antonio Di Pietro
Abstract
We show that these virulence-related functions are repressed by the preferred nitrogen source ammonium and restored by treatment with l-methionine sulfoximine or rapamycin, two specific inhibitors of Gln synthetase and the protein kinase TOR, respectively. Deletion of the bZIP protein MeaB also resu... | PMID: 20639450

Large_pdficon_selected PDF is available here.
Plant Cell Online (22)7 2010
A nitrogen response pathway regulates virulence functions in Fusarium oxysporum via the protein kinase TOR and the bZIP protein MeaB.
Manuel S López-Berges, Nicolas Rispail, Rafael C Prados-Rosales and Antonio Di Pietro
Abstract
We show that these virulence-related functions are repressed by the preferred nitrogen source ammonium and restored by treatment with l-methionine sulfoximine or rapamycin, two specific inhibitors of Gln synthetase and the protein kinase TOR, respectively. Deletion of the bZIP protein MeaB also resu... | PMID: 20639450

Large_pdficon_selected PDF is available here.
Plant Cell Online (22)7 2010
A nitrogen response pathway regulates virulence functions in Fusarium oxysporum via the protein kinase TOR and the bZIP protein MeaB.
Manuel S López-Berges, Nicolas Rispail, Rafael C Prados-Rosales and Antonio Di Pietro
Abstract
We show that these virulence-related functions are repressed by the preferred nitrogen source ammonium and restored by treatment with l-methionine sulfoximine or rapamycin, two specific inhibitors of Gln synthetase and the protein kinase TOR, respectively. Deletion of the bZIP protein MeaB also resu... | PMID: 20639450

Large_pdficon_selected PDF is available here.
Plant Cell Online (22)7 2010
A nitrogen response pathway regulates virulence functions in Fusarium oxysporum via the protein kinase TOR and the bZIP protein MeaB.
Manuel S López-Berges, Nicolas Rispail, Rafael C Prados-Rosales and Antonio Di Pietro
Abstract
We show that these virulence-related functions are repressed by the preferred nitrogen source ammonium and restored by treatment with l-methionine sulfoximine or rapamycin, two specific inhibitors of Gln synthetase and the protein kinase TOR, respectively. Deletion of the bZIP protein MeaB also resu... | PMID: 20639450

Large_pdficon_selected PDF is available here.
Plant Cell Online (22)7 2010
A nitrogen response pathway regulates virulence functions in Fusarium oxysporum via the protein kinase TOR and the bZIP protein MeaB.
Manuel S López-Berges, Nicolas Rispail, Rafael C Prados-Rosales and Antonio Di Pietro
Abstract
We show that these virulence-related functions are repressed by the preferred nitrogen source ammonium and restored by treatment with l-methionine sulfoximine or rapamycin, two specific inhibitors of Gln synthetase and the protein kinase TOR, respectively. Deletion of the bZIP protein MeaB also resu... | PMID: 20639450

Large_pdficon_selected PDF is available here.
Plant Cell Online (22)7 2010
A nitrogen response pathway regulates virulence functions in Fusarium oxysporum via the protein kinase TOR and the bZIP protein MeaB.
Manuel S López-Berges, Nicolas Rispail, Rafael C Prados-Rosales and Antonio Di Pietro
Abstract
We show that these virulence-related functions are repressed by the preferred nitrogen source ammonium and restored by treatment with l-methionine sulfoximine or rapamycin, two specific inhibitors of Gln synthetase and the protein kinase TOR, respectively. Deletion of the bZIP protein MeaB also resu... | PMID: 20639450

Large_pdficon_selected PDF is available here.
Plant Cell Online (22)7 2010
A nitrogen response pathway regulates virulence functions in Fusarium oxysporum via the protein kinase TOR and the bZIP protein MeaB.
Manuel S López-Berges, Nicolas Rispail, Rafael C Prados-Rosales and Antonio Di Pietro
Abstract
We show that these virulence-related functions are repressed by the preferred nitrogen source ammonium and restored by treatment with l-methionine sulfoximine or rapamycin, two specific inhibitors of Gln synthetase and the protein kinase TOR, respectively. Deletion of the bZIP protein MeaB also resu... | PMID: 20639450

Large_pdficon_selected PDF is available here.
Plant Cell Online (22)7 2010
A nitrogen response pathway regulates virulence functions in Fusarium oxysporum via the protein kinase TOR and the bZIP protein MeaB.
Manuel S López-Berges, Nicolas Rispail, Rafael C Prados-Rosales and Antonio Di Pietro
Abstract
We show that these virulence-related functions are repressed by the preferred nitrogen source ammonium and restored by treatment with l-methionine sulfoximine or rapamycin, two specific inhibitors of Gln synthetase and the protein kinase TOR, respectively. Deletion of the bZIP protein MeaB also resu... | PMID: 20639450

Large_pdficon_selected PDF is available here.
Plant Cell Online (22)7 2010
A nitrogen response pathway regulates virulence functions in Fusarium oxysporum via the protein kinase TOR and the bZIP protein MeaB.
Manuel S López-Berges, Nicolas Rispail, Rafael C Prados-Rosales and Antonio Di Pietro
Abstract
We show that these virulence-related functions are repressed by the preferred nitrogen source ammonium and restored by treatment with l-methionine sulfoximine or rapamycin, two specific inhibitors of Gln synthetase and the protein kinase TOR, respectively. Deletion of the bZIP protein MeaB also resu... | PMID: 20639450

Large_pdficon_selected PDF is available here.
Plant Cell Online (22)7 2010
A nitrogen response pathway regulates virulence functions in Fusarium oxysporum via the protein kinase TOR and the bZIP protein MeaB.
Manuel S López-Berges, Nicolas Rispail, Rafael C Prados-Rosales and Antonio Di Pietro
Abstract
We show that these virulence-related functions are repressed by the preferred nitrogen source ammonium and restored by treatment with l-methionine sulfoximine or rapamycin, two specific inhibitors of Gln synthetase and the protein kinase TOR, respectively. Deletion of the bZIP protein MeaB also resu... | PMID: 20639450

Large_pdficon_selected PDF is available here.
Plant Cell Online (22)7 2010
A nitrogen response pathway regulates virulence functions in Fusarium oxysporum via the protein kinase TOR and the bZIP protein MeaB.
Manuel S López-Berges, Nicolas Rispail, Rafael C Prados-Rosales and Antonio Di Pietro
Abstract
We show that these virulence-related functions are repressed by the preferred nitrogen source ammonium and restored by treatment with l-methionine sulfoximine or rapamycin, two specific inhibitors of Gln synthetase and the protein kinase TOR, respectively. Deletion of the bZIP protein MeaB also resu... | PMID: 20639450

Large_pdficon_selected PDF is available here.
Plant Cell Online (22)7 2010
A nitrogen response pathway regulates virulence functions in Fusarium oxysporum via the protein kinase TOR and the bZIP protein MeaB.
Manuel S López-Berges, Nicolas Rispail, Rafael C Prados-Rosales and Antonio Di Pietro
Abstract
We show that these virulence-related functions are repressed by the preferred nitrogen source ammonium and restored by treatment with l-methionine sulfoximine or rapamycin, two specific inhibitors of Gln synthetase and the protein kinase TOR, respectively. Deletion of the bZIP protein MeaB also resu... | PMID: 20639450

Large_pdficon_selected PDF is available here.
Plant Cell Online (22)7 2010
A nitrogen response pathway regulates virulence functions in Fusarium oxysporum via the protein kinase TOR and the bZIP protein MeaB.
Manuel S López-Berges, Nicolas Rispail, Rafael C Prados-Rosales and Antonio Di Pietro
Abstract
We show that these virulence-related functions are repressed by the preferred nitrogen source ammonium and restored by treatment with l-methionine sulfoximine or rapamycin, two specific inhibitors of Gln synthetase and the protein kinase TOR, respectively. Deletion of the bZIP protein MeaB also resu... | PMID: 20639450

Large_pdficon_selected PDF is available here.
Plant Cell Online (22)7 2010
A nitrogen response pathway regulates virulence functions in Fusarium oxysporum via the protein kinase TOR and the bZIP protein MeaB.
Manuel S López-Berges, Nicolas Rispail, Rafael C Prados-Rosales and Antonio Di Pietro
Abstract
We show that these virulence-related functions are repressed by the preferred nitrogen source ammonium and restored by treatment with l-methionine sulfoximine or rapamycin, two specific inhibitors of Gln synthetase and the protein kinase TOR, respectively. Deletion of the bZIP protein MeaB also resu... | PMID: 20639450

Large_pdficon_selected PDF is available here.
Plant Cell Online (22)7 2010
A nitrogen response pathway regulates virulence functions in Fusarium oxysporum via the protein kinase TOR and the bZIP protein MeaB.
Manuel S López-Berges, Nicolas Rispail, Rafael C Prados-Rosales and Antonio Di Pietro
Abstract
We show that these virulence-related functions are repressed by the preferred nitrogen source ammonium and restored by treatment with l-methionine sulfoximine or rapamycin, two specific inhibitors of Gln synthetase and the protein kinase TOR, respectively. Deletion of the bZIP protein MeaB also resu... | PMID: 20639450

Large_pdficon_selected PDF is available here.
Plant Cell Online (22)7 2010
A nitrogen response pathway regulates virulence functions in Fusarium oxysporum via the protein kinase TOR and the bZIP protein MeaB.
Manuel S López-Berges, Nicolas Rispail, Rafael C Prados-Rosales and Antonio Di Pietro
Abstract
We show that these virulence-related functions are repressed by the preferred nitrogen source ammonium and restored by treatment with l-methionine sulfoximine or rapamycin, two specific inhibitors of Gln synthetase and the protein kinase TOR, respectively. Deletion of the bZIP protein MeaB also resu... | PMID: 20639450

Large_pdficon_selected PDF is available here.
Plant Cell Online (22)7 2010
A nitrogen response pathway regulates virulence functions in Fusarium oxysporum via the protein kinase TOR and the bZIP protein MeaB.
Manuel S López-Berges, Nicolas Rispail, Rafael C Prados-Rosales and Antonio Di Pietro
Abstract
We show that these virulence-related functions are repressed by the preferred nitrogen source ammonium and restored by treatment with l-methionine sulfoximine or rapamycin, two specific inhibitors of Gln synthetase and the protein kinase TOR, respectively. Deletion of the bZIP protein MeaB also resu... | PMID: 20639450

Large_pdficon_selected PDF is available here.
Plant Cell Online (22)7 2010
A nitrogen response pathway regulates virulence functions in Fusarium oxysporum via the protein kinase TOR and the bZIP protein MeaB.
Manuel S López-Berges, Nicolas Rispail, Rafael C Prados-Rosales and Antonio Di Pietro
Abstract
We show that these virulence-related functions are repressed by the preferred nitrogen source ammonium and restored by treatment with l-methionine sulfoximine or rapamycin, two specific inhibitors of Gln synthetase and the protein kinase TOR, respectively. Deletion of the bZIP protein MeaB also resu... | PMID: 20639450

Large_pdficon_selected PDF is available here.
Plant Cell Online (22)7 2010
A nitrogen response pathway regulates virulence functions in Fusarium oxysporum via the protein kinase TOR and the bZIP protein MeaB.
Manuel S López-Berges, Nicolas Rispail, Rafael C Prados-Rosales and Antonio Di Pietro
Abstract
We show that these virulence-related functions are repressed by the preferred nitrogen source ammonium and restored by treatment with l-methionine sulfoximine or rapamycin, two specific inhibitors of Gln synthetase and the protein kinase TOR, respectively. Deletion of the bZIP protein MeaB also resu... | PMID: 20639450

Large_pdficon_selected PDF is available here.
Plant Cell Online (22)7 2010
A nitrogen response pathway regulates virulence functions in Fusarium oxysporum via the protein kinase TOR and the bZIP protein MeaB.
Manuel S López-Berges, Nicolas Rispail, Rafael C Prados-Rosales and Antonio Di Pietro
Abstract
We show that these virulence-related functions are repressed by the preferred nitrogen source ammonium and restored by treatment with l-methionine sulfoximine or rapamycin, two specific inhibitors of Gln synthetase and the protein kinase TOR, respectively. Deletion of the bZIP protein MeaB also resu... | PMID: 20639450

Large_pdficon_selected PDF is available here.
Plant Cell Online (22)7 2010
A nitrogen response pathway regulates virulence functions in Fusarium oxysporum via the protein kinase TOR and the bZIP protein MeaB.
Manuel S López-Berges, Nicolas Rispail, Rafael C Prados-Rosales and Antonio Di Pietro
Abstract
We show that these virulence-related functions are repressed by the preferred nitrogen source ammonium and restored by treatment with l-methionine sulfoximine or rapamycin, two specific inhibitors of Gln synthetase and the protein kinase TOR, respectively. Deletion of the bZIP protein MeaB also resu... | PMID: 20639450

Large_pdficon_selected PDF is available here.
Plant Cell Online (22)7 2010
A nitrogen response pathway regulates virulence functions in Fusarium oxysporum via the protein kinase TOR and the bZIP protein MeaB.
Manuel S López-Berges, Nicolas Rispail, Rafael C Prados-Rosales and Antonio Di Pietro
Abstract
We show that these virulence-related functions are repressed by the preferred nitrogen source ammonium and restored by treatment with l-methionine sulfoximine or rapamycin, two specific inhibitors of Gln synthetase and the protein kinase TOR, respectively. Deletion of the bZIP protein MeaB also resu... | PMID: 20639450

Large_pdficon_selected PDF is available here.
Plant Cell Online (22)7 2010
A nitrogen response pathway regulates virulence functions in Fusarium oxysporum via the protein kinase TOR and the bZIP protein MeaB.
Manuel S López-Berges, Nicolas Rispail, Rafael C Prados-Rosales and Antonio Di Pietro
Abstract
We show that these virulence-related functions are repressed by the preferred nitrogen source ammonium and restored by treatment with l-methionine sulfoximine or rapamycin, two specific inhibitors of Gln synthetase and the protein kinase TOR, respectively. Deletion of the bZIP protein MeaB also resu... | PMID: 20639450

Large_pdficon_selected PDF is available here.
Plant Cell Online (22)7 2010
A nitrogen response pathway regulates virulence functions in Fusarium oxysporum via the protein kinase TOR and the bZIP protein MeaB.
Manuel S López-Berges, Nicolas Rispail, Rafael C Prados-Rosales and Antonio Di Pietro
Abstract
We show that these virulence-related functions are repressed by the preferred nitrogen source ammonium and restored by treatment with l-methionine sulfoximine or rapamycin, two specific inhibitors of Gln synthetase and the protein kinase TOR, respectively. Deletion of the bZIP protein MeaB also resu... | PMID: 20639450

Large_pdficon_selected PDF is available here.
Plant Cell Online (22)7 2010
A nitrogen response pathway regulates virulence functions in Fusarium oxysporum via the protein kinase TOR and the bZIP protein MeaB.
Manuel S López-Berges, Nicolas Rispail, Rafael C Prados-Rosales and Antonio Di Pietro
Abstract
We show that these virulence-related functions are repressed by the preferred nitrogen source ammonium and restored by treatment with l-methionine sulfoximine or rapamycin, two specific inhibitors of Gln synthetase and the protein kinase TOR, respectively. Deletion of the bZIP protein MeaB also resu... | PMID: 20639450

Large_pdficon_selected PDF is available here.
Plant Cell Online (22)7 2010
A nitrogen response pathway regulates virulence functions in Fusarium oxysporum via the protein kinase TOR and the bZIP protein MeaB.
Manuel S López-Berges, Nicolas Rispail, Rafael C Prados-Rosales and Antonio Di Pietro
Abstract
We show that these virulence-related functions are repressed by the preferred nitrogen source ammonium and restored by treatment with l-methionine sulfoximine or rapamycin, two specific inhibitors of Gln synthetase and the protein kinase TOR, respectively. Deletion of the bZIP protein MeaB also resu... | PMID: 20639450

Large_pdficon_selected PDF is available here.
Plant Cell Online (22)7 2010
A nitrogen response pathway regulates virulence functions in Fusarium oxysporum via the protein kinase TOR and the bZIP protein MeaB.
Manuel S López-Berges, Nicolas Rispail, Rafael C Prados-Rosales and Antonio Di Pietro
Abstract
We show that these virulence-related functions are repressed by the preferred nitrogen source ammonium and restored by treatment with l-methionine sulfoximine or rapamycin, two specific inhibitors of Gln synthetase and the protein kinase TOR, respectively. Deletion of the bZIP protein MeaB also resu... | PMID: 20639450

Large_pdficon_selected PDF is available here.
Plant Journal (63)1 2010
Homo- and heterodimers of tobacco bZIP proteins counteract as positive or negative regulators of transcription during pollen development.
Tim Iven, Anne Strathmann, Stefan Böttner, Thomas Zwafink, Thorsten Heinekamp, Anne Guivarc'h, Thomas Roitsch and Wolfgang Dröge-Laser
Abstract
We propose that its homodimer blocks G-box mediated transcription. In summary, these data support a regulatory model in which BZI-4 homodimers and BZI-1/BZI-2 heterodimers perform opposing functions as negative or positive transcriptional regulators during pollen development.... | PMID: 20409000

Large_pdficon_selected PDF is available here.
Plant Journal (63)1 2010
Homo- and heterodimers of tobacco bZIP proteins counteract as positive or negative regulators of transcription during pollen development.
Tim Iven, Anne Strathmann, Stefan Böttner, Thomas Zwafink, Thorsten Heinekamp, Anne Guivarc'h, Thomas Roitsch and Wolfgang Dröge-Laser
Abstract
We propose that its homodimer blocks G-box mediated transcription. In summary, these data support a regulatory model in which BZI-4 homodimers and BZI-1/BZI-2 heterodimers perform opposing functions as negative or positive transcriptional regulators during pollen development.... | PMID: 20409000

Large_pdficon_selected PDF is available here.
Plant Journal (63)1 2010
Homo- and heterodimers of tobacco bZIP proteins counteract as positive or negative regulators of transcription during pollen development.
Tim Iven, Anne Strathmann, Stefan Böttner, Thomas Zwafink, Thorsten Heinekamp, Anne Guivarc'h, Thomas Roitsch and Wolfgang Dröge-Laser
Abstract
We propose that its homodimer blocks G-box mediated transcription. In summary, these data support a regulatory model in which BZI-4 homodimers and BZI-1/BZI-2 heterodimers perform opposing functions as negative or positive transcriptional regulators during pollen development.... | PMID: 20409000

Large_pdficon_selected PDF is available here.
Plant Journal (63)1 2010
Homo- and heterodimers of tobacco bZIP proteins counteract as positive or negative regulators of transcription during pollen development.
Tim Iven, Anne Strathmann, Stefan Böttner, Thomas Zwafink, Thorsten Heinekamp, Anne Guivarc'h, Thomas Roitsch and Wolfgang Dröge-Laser
Abstract
We propose that its homodimer blocks G-box mediated transcription. In summary, these data support a regulatory model in which BZI-4 homodimers and BZI-1/BZI-2 heterodimers perform opposing functions as negative or positive transcriptional regulators during pollen development.... | PMID: 20409000

Large_pdficon_selected PDF is available here.
Plant Journal (63)1 2010
Homo- and heterodimers of tobacco bZIP proteins counteract as positive or negative regulators of transcription during pollen development.
Tim Iven, Anne Strathmann, Stefan Böttner, Thomas Zwafink, Thorsten Heinekamp, Anne Guivarc'h, Thomas Roitsch and Wolfgang Dröge-Laser
Abstract
We propose that its homodimer blocks G-box mediated transcription. In summary, these data support a regulatory model in which BZI-4 homodimers and BZI-1/BZI-2 heterodimers perform opposing functions as negative or positive transcriptional regulators during pollen development.... | PMID: 20409000

Large_pdficon_selected PDF is available here.
Plant Journal (63)1 2010
Homo- and heterodimers of tobacco bZIP proteins counteract as positive or negative regulators of transcription during pollen development.
Tim Iven, Anne Strathmann, Stefan Böttner, Thomas Zwafink, Thorsten Heinekamp, Anne Guivarc'h, Thomas Roitsch and Wolfgang Dröge-Laser
Abstract
We propose that its homodimer blocks G-box mediated transcription. In summary, these data support a regulatory model in which BZI-4 homodimers and BZI-1/BZI-2 heterodimers perform opposing functions as negative or positive transcriptional regulators during pollen development.... | PMID: 20409000

Large_pdficon_selected PDF is available here.
Plant Journal (63)1 2010
Homo- and heterodimers of tobacco bZIP proteins counteract as positive or negative regulators of transcription during pollen development.
Tim Iven, Anne Strathmann, Stefan Böttner, Thomas Zwafink, Thorsten Heinekamp, Anne Guivarc'h, Thomas Roitsch and Wolfgang Dröge-Laser
Abstract
We propose that its homodimer blocks G-box mediated transcription. In summary, these data support a regulatory model in which BZI-4 homodimers and BZI-1/BZI-2 heterodimers perform opposing functions as negative or positive transcriptional regulators during pollen development.... | PMID: 20409000

Large_pdficon_selected PDF is available here.
Plant Journal (63)1 2010
Homo- and heterodimers of tobacco bZIP proteins counteract as positive or negative regulators of transcription during pollen development.
Tim Iven, Anne Strathmann, Stefan Böttner, Thomas Zwafink, Thorsten Heinekamp, Anne Guivarc'h, Thomas Roitsch and Wolfgang Dröge-Laser
Abstract
We propose that its homodimer blocks G-box mediated transcription. In summary, these data support a regulatory model in which BZI-4 homodimers and BZI-1/BZI-2 heterodimers perform opposing functions as negative or positive transcriptional regulators during pollen development.... | PMID: 20409000

Large_pdficon_selected PDF is available here.
Plant Journal (63)1 2010
Homo- and heterodimers of tobacco bZIP proteins counteract as positive or negative regulators of transcription during pollen development.
Tim Iven, Anne Strathmann, Stefan Böttner, Thomas Zwafink, Thorsten Heinekamp, Anne Guivarc'h, Thomas Roitsch and Wolfgang Dröge-Laser
Abstract
We propose that its homodimer blocks G-box mediated transcription. In summary, these data support a regulatory model in which BZI-4 homodimers and BZI-1/BZI-2 heterodimers perform opposing functions as negative or positive transcriptional regulators during pollen development.... | PMID: 20409000

Large_pdficon_selected PDF is available here.
Plant Journal (63)1 2010
Homo- and heterodimers of tobacco bZIP proteins counteract as positive or negative regulators of transcription during pollen development.
Tim Iven, Anne Strathmann, Stefan Böttner, Thomas Zwafink, Thorsten Heinekamp, Anne Guivarc'h, Thomas Roitsch and Wolfgang Dröge-Laser
Abstract
We propose that its homodimer blocks G-box mediated transcription. In summary, these data support a regulatory model in which BZI-4 homodimers and BZI-1/BZI-2 heterodimers perform opposing functions as negative or positive transcriptional regulators during pollen development.... | PMID: 20409000

Large_pdficon_selected PDF is available here.
Plant Journal (63)1 2010
Homo- and heterodimers of tobacco bZIP proteins counteract as positive or negative regulators of transcription during pollen development.
Tim Iven, Anne Strathmann, Stefan Böttner, Thomas Zwafink, Thorsten Heinekamp, Anne Guivarc'h, Thomas Roitsch and Wolfgang Dröge-Laser
Abstract
We propose that its homodimer blocks G-box mediated transcription. In summary, these data support a regulatory model in which BZI-4 homodimers and BZI-1/BZI-2 heterodimers perform opposing functions as negative or positive transcriptional regulators during pollen development.... | PMID: 20409000

Large_pdficon_selected PDF is available here.
Plant Journal (63)1 2010
Homo- and heterodimers of tobacco bZIP proteins counteract as positive or negative regulators of transcription during pollen development.
Tim Iven, Anne Strathmann, Stefan Böttner, Thomas Zwafink, Thorsten Heinekamp, Anne Guivarc'h, Thomas Roitsch and Wolfgang Dröge-Laser
Abstract
We propose that its homodimer blocks G-box mediated transcription. In summary, these data support a regulatory model in which BZI-4 homodimers and BZI-1/BZI-2 heterodimers perform opposing functions as negative or positive transcriptional regulators during pollen development.... | PMID: 20409000

Large_pdficon_selected PDF is available here.
Plant Journal (63)1 2010
Homo- and heterodimers of tobacco bZIP proteins counteract as positive or negative regulators of transcription during pollen development.
Tim Iven, Anne Strathmann, Stefan Böttner, Thomas Zwafink, Thorsten Heinekamp, Anne Guivarc'h, Thomas Roitsch and Wolfgang Dröge-Laser
Abstract
We propose that its homodimer blocks G-box mediated transcription. In summary, these data support a regulatory model in which BZI-4 homodimers and BZI-1/BZI-2 heterodimers perform opposing functions as negative or positive transcriptional regulators during pollen development.... | PMID: 20409000

Large_pdficon_selected PDF is available here.
Plant Journal (63)1 2010
Homo- and heterodimers of tobacco bZIP proteins counteract as positive or negative regulators of transcription during pollen development.
Tim Iven, Anne Strathmann, Stefan Böttner, Thomas Zwafink, Thorsten Heinekamp, Anne Guivarc'h, Thomas Roitsch and Wolfgang Dröge-Laser
Abstract
We propose that its homodimer blocks G-box mediated transcription. In summary, these data support a regulatory model in which BZI-4 homodimers and BZI-1/BZI-2 heterodimers perform opposing functions as negative or positive transcriptional regulators during pollen development.... | PMID: 20409000

Large_pdficon_selected PDF is available here.
Plant Journal (63)1 2010
Homo- and heterodimers of tobacco bZIP proteins counteract as positive or negative regulators of transcription during pollen development.
Tim Iven, Anne Strathmann, Stefan Böttner, Thomas Zwafink, Thorsten Heinekamp, Anne Guivarc'h, Thomas Roitsch and Wolfgang Dröge-Laser
Abstract
We propose that its homodimer blocks G-box mediated transcription. In summary, these data support a regulatory model in which BZI-4 homodimers and BZI-1/BZI-2 heterodimers perform opposing functions as negative or positive transcriptional regulators during pollen development.... | PMID: 20409000

Large_pdficon_selected PDF is available here.
Plant Journal (63)1 2010
Homo- and heterodimers of tobacco bZIP proteins counteract as positive or negative regulators of transcription during pollen development.
Tim Iven, Anne Strathmann, Stefan Böttner, Thomas Zwafink, Thorsten Heinekamp, Anne Guivarc'h, Thomas Roitsch and Wolfgang Dröge-Laser
Abstract
We propose that its homodimer blocks G-box mediated transcription. In summary, these data support a regulatory model in which BZI-4 homodimers and BZI-1/BZI-2 heterodimers perform opposing functions as negative or positive transcriptional regulators during pollen development.... | PMID: 20409000

Large_pdficon_selected PDF is available here.
Plant Journal (63)1 2010
Homo- and heterodimers of tobacco bZIP proteins counteract as positive or negative regulators of transcription during pollen development.
Tim Iven, Anne Strathmann, Stefan Böttner, Thomas Zwafink, Thorsten Heinekamp, Anne Guivarc'h, Thomas Roitsch and Wolfgang Dröge-Laser
Abstract
We propose that its homodimer blocks G-box mediated transcription. In summary, these data support a regulatory model in which BZI-4 homodimers and BZI-1/BZI-2 heterodimers perform opposing functions as negative or positive transcriptional regulators during pollen development.... | PMID: 20409000

Large_pdficon_selected PDF is available here.
Plant Journal (63)1 2010
Homo- and heterodimers of tobacco bZIP proteins counteract as positive or negative regulators of transcription during pollen development.
Tim Iven, Anne Strathmann, Stefan Böttner, Thomas Zwafink, Thorsten Heinekamp, Anne Guivarc'h, Thomas Roitsch and Wolfgang Dröge-Laser
Abstract
We propose that its homodimer blocks G-box mediated transcription. In summary, these data support a regulatory model in which BZI-4 homodimers and BZI-1/BZI-2 heterodimers perform opposing functions as negative or positive transcriptional regulators during pollen development.... | PMID: 20409000

Large_pdficon_selected PDF is available here.
Plant Journal (63)1 2010
Homo- and heterodimers of tobacco bZIP proteins counteract as positive or negative regulators of transcription during pollen development.
Tim Iven, Anne Strathmann, Stefan Böttner, Thomas Zwafink, Thorsten Heinekamp, Anne Guivarc'h, Thomas Roitsch and Wolfgang Dröge-Laser
Abstract
We propose that its homodimer blocks G-box mediated transcription. In summary, these data support a regulatory model in which BZI-4 homodimers and BZI-1/BZI-2 heterodimers perform opposing functions as negative or positive transcriptional regulators during pollen development.... | PMID: 20409000

Large_pdficon_selected PDF is available here.
Plant Journal (63)1 2010
Homo- and heterodimers of tobacco bZIP proteins counteract as positive or negative regulators of transcription during pollen development.
Tim Iven, Anne Strathmann, Stefan Böttner, Thomas Zwafink, Thorsten Heinekamp, Anne Guivarc'h, Thomas Roitsch and Wolfgang Dröge-Laser
Abstract
We propose that its homodimer blocks G-box mediated transcription. In summary, these data support a regulatory model in which BZI-4 homodimers and BZI-1/BZI-2 heterodimers perform opposing functions as negative or positive transcriptional regulators during pollen development.... | PMID: 20409000

Large_pdficon_selected PDF is available here.