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Dynein ATPaseFollow by RSS 

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keywords > Enzymes and Coenzymes > Enzymes > Hydrolases > Acid Anhydride Hydrolases > Adenosine Triphosphatases > Molecular Motor Proteins > Dynein ATPase

Latest papers

Direct binding with histone deacetylase 6 mediates the reversible recruitment of parkin to the centrosome.

Antagonistic effects of doublecortin and MARK2/Par-1 in the developing cerebral cortex.

Regulation of dynactin through the differential expression of p150Glued isoforms.

DNAI2 mutations cause primary ciliary dyskinesia with defects in the outer dynein arm.

Delocalization of the microtubule motor Dynein from mitotic spindles by the human papillomavirus E7 oncoprotein is not sufficient for induction of multipolar mitoses.

Ultrastructural abnormalities of respiratory cilia: a 25-year experience.

Dynein light intermediate chain: an essential subunit that contributes to spindle checkpoint inactivation.

pH dependent unfolding characteristics of DLC8 dimer: Residue level details from NMR.

ODA16 aids axonemal outer row dynein assembly through an interaction with the intraflagellar transport machinery.

LIS1 and NDEL1 coordinate the plus-end-directed transport of cytoplasmic dynein.

Dynein branches out.

Functional auditory hair cells produced in the mammalian cochlea by in utero gene transfer.

Lis1 and Ndel1 influence the timing of nuclear envelope breakdown in neural stem cells.

Direct role of dynein motor in stable kinetochore-microtubule attachment, orientation, and alignment.

A novel mouse model with impaired dynein/dynactin function develops amyotrophic lateral sclerosis (ALS)-like features in motor neurons and improves lifespan in SOD1-ALS mice.

Regulatory ATPase sites of cytoplasmic dynein affect processivity and force generation.

MTOC translocation modulates IS formation and controls sustained T cell signaling.

Impacts of Usher syndrome type IB mutations on human myosin VIIa motor function.

A bi-directional carboxypeptidase E-driven transport mechanism controls BDNF vesicle homeostasis in hippocampal neurons.

A new mechanism controlling kinetochore-microtubule interactions revealed by comparison of two dynein-targeting components: SPDL-1 and the Rod/Zwilch/Zw10 complex.

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