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2 subtopics

 

  • DNA Ligases
  • RNA Ligase (ATP)

Polynucleotide LigasesFollow by RSS 

You've reached a pubget topic page. Below are the latest papers on this topic, with subtopics on the left.

keywords > Enzymes and Coenzymes > Enzymes > Ligases > Polynucleotide Ligases

Latest papers

Bacteriophage T4 RNA ligase 2 (gp24.1) exemplifies a family of RNA ligases found in all phylogenetic domains.

Roles for ligases in the RNA editing complex of Trypanosoma brucei: band IV is needed for U-deletion and RNA repair.

The effect of cytidine on the structure and function of an RNA ligase ribozyme.

Enhanced detection and distinction of RNA by enzymatic probe ligation.

A host-specific function is required for ligation of a wide variety of ribozyme-processed RNAs.

Joining of RNAs by splinted ligation.

Inverse single-strand RACE: an adapter-independent method of 5' RACE.

Emergence of a dual-catalytic RNA with metal-specific cleavage and ligase activities: the spandrels of RNA evolution.

A tRNA circularization assay: evidence for the variation of the conformation of the CCA end.

Detection of Chlamydia trachomatis in urine samples by nucleic acid tests: comparison with culture and enzyme immunoassay of genital swab specimens.

Induction of gene expression by intracellular interferon-gamma: abrogation of the species specificity barrier.

Location of N2,N2-dimethylguanosine-specific tRNA methyltransferase.

An ex vivo assay for estimating the antiviral state of hepatocytes.

Oligo-2',5'-adenylate synthetase in pulmonary sarcoidosis and idiopathic pulmonary fibrosis.

Human DNA ligase I cDNA: cloning and functional expression in Saccharomyces cerevisiae.

Mammalian DNA ligases. Biosynthesis and intracellular localization of DNA ligase I.

Mammalian DNA ligases. Catalytic domain and size of DNA ligase I.

Identification of DNA ligase I related polypeptides in three different human cells.

DNA ligases from rat liver. Purification and partial characterization of two molecular forms.

Blunt-end and single-strand ligations by Escherichia coli ligase: influence on an in vitro amplification scheme.

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