نتایج جستجو برای: kinesin spindle protein ksp

تعداد نتایج: 1257635  

2014
Emmanuel Gallaud Renaud Caous Aude Pascal Franck Bazile Jean-Philippe Gagné Sébastien Huet Guy G. Poirier Denis Chrétien Laurent Richard-Parpaillon Régis Giet

The mitotic spindle is crucial to achieve segregation of sister chromatids. To identify new mitotic spindle assembly regulators, we isolated 855 microtubule-associated proteins (MAPs) from Drosophila melanogaster mitotic or interphasic embryos. Using RNAi, we screened 96 poorly characterized genes in the Drosophila central nervous system to establish their possible role during spindle assembly....

2016
Hailing Zong Stephanie K. Carnes Christina Moe Claire E. Walczak Stephanie C. Ems-McClung

To ensure proper spindle assembly, microtubule (MT) dynamics needs to be spatially regulated within the cell. The kinesin-13 MCAK is a potent MT depolymerase with a complex subcellular localization, yet how MCAK spatial regulation contributes to spindle assembly is not understood. Here we show that the far C-terminus of MCAK plays a critical role in regulating MCAK conformation, subspindle loca...

2012
Aurélien Courtois Melina Schuh Jan Ellenberg Takashi Hiiragi

The transition from meiosis to mitosis, classically defined by fertilization, is a fundamental process in development. However, its mechanism remains largely unexplored. In this paper, we report a surprising gradual transition from meiosis to mitosis over the first eight divisions of the mouse embryo. The first cleavages still largely share the mechanism of spindle formation with meiosis, durin...

Journal: :The Journal of Cell Biology 2004
Nicole LeBrasseur

he Eg5 kinesin helps build a bipolar spindle by sliding microtubules past each other at the spindle midzone. On page 473, Ganem and Compton show that bipolarity requires another kinesin, called Kif2a, that localizes to spindle poles. Kif2a is strongly expressed in neuronal cells and is a member of a class of kinesins that depolymerize micro-tubules instead of stepping along their surface. The a...

Journal: :The Journal of Cell Biology 1999
Xuemei Zeng Jason A. Kahana Pamela A. Silver Mary K. Morphew J. Richard McIntosh Ian T. Fitch John Carbon William S. Saunders

We have identified a novel centromere-associated gene product from Saccharomyces cerevisiae that plays a role in spindle assembly and stability. Strains with a deletion of SLK19 (synthetic lethal Kar3p gene) exhibit abnormally short mitotic spindles, increased numbers of astral microtubules, and require the presence of the kinesin motor Kar3p for viability. When cells are deprived of both Slk19...

2010
Kuan Yoow Chan Keith R. Matthews Klaus Ersfeld

Mitotic kinesins are essential for faithful chromosome segregation and cell proliferation. Therefore, in humans, kinesin motor proteins have been identified as anti-cancer drug targets and small molecule inhibitors are now tested in clinical studies. Phylogenetic analyses have assigned five of the approximately fifty kinesin motor proteins coded by Trypanosoma brucei genome to the Kinesin-13 fa...

Journal: :Molecular biology of the cell 2004
Rita Gandhi Silvia Bonaccorsi Diana Wentworth Stephen Doxsey Maurizio Gatti Andrea Pereira

We have performed a mutational analysis together with RNA interference to determine the role of the kinesin-like protein KLP67A in Drosophila cell division. During both mitosis and male meiosis, Klp67A mutations cause an increase in MT length and disrupt discrete aspects of spindle assembly, as well as cytokinesis. Mutant cells exhibit greatly enlarged metaphase spindle as a result of excessive...

2010
Gul Civelekoglu-Scholey Li Tao Ingrid Brust-Mascher Roy Wollman Jonathan M. Scholey

We tested the classical hypothesis that astral, prometaphase bipolar mitotic spindles are maintained by balanced outward and inward forces exerted on spindle poles by kinesin-5 and -14 using modeling of in vitro and in vivo data from Drosophila melanogaster embryos. Throughout prometaphase, puncta of both motors aligned on interpolar microtubules (MTs [ipMTs]), and motor perturbation changed sp...

2015
Olga I. Kahn Vandana Sharma Christian González-Billault Peter W. Baas

Kinesin-5 is a slow homotetrameric motor protein best known for its essential role in the mitotic spindle, where it limits the rate at which faster motors can move microtubules. In neurons, experimental suppression of kinesin-5 causes the axon to grow faster by increasing the mobility of microtubules in the axonal shaft and the invasion of microtubules into the growth cone. Does kinesin-5 act d...

Journal: :Biophysical journal 2015
Ingrid Brust-Mascher Gul Civelekoglu-Scholey Jonathan M Scholey

Elongation of the mitotic spindle during anaphase B contributes to chromosome segregation in many cells. Here, we quantitatively test the ability of two models for spindle length control to describe the dynamics of anaphase B spindle elongation using experimental data from Drosophila embryos. In the slide-and-flux-or-elongate (SAFE) model, kinesin-5 motors persistently slide apart antiparallel ...

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