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Summary Expression Phenotypes Gene Literature (18) GO Terms (6) Nucleotides (180) Proteins (42) Interactants (94) Wiki
XB--489354

Papers associated with kifc1



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Microtubule Minus-End Binding Protein CAMSAP2 and Kinesin-14 Motor KIFC3 Control Dendritic Microtubule Organization., Cao Y, Lipka J, Stucchi R, Burute M, Pan X, Portegies S, Tas R, Willems J, Will L, MacGillavry H, Altelaar M, Kapitein LC, Harterink M, Hoogenraad CC., Curr Biol. March 9, 2020; 30 (5): 899-908.e6.          


RanGTP induces an effector gradient of XCTK2 and importin α/β for spindle microtubule cross-linking., Ems-McClung SC, Emch M, Zhang S, Mahnoor S, Weaver LN, Walczak CE., J Cell Biol. February 3, 2020; 219 (2):                 


Importin α Partitioning to the Plasma Membrane Regulates Intracellular Scaling., Brownlee C, Heald R., Cell. February 7, 2019; 176 (4): 805-815.e8.                  


The C-terminal kinesin motor KIFC1 may participate in nuclear reshaping and flagellum formation during spermiogenesis of Larimichthys crocea., Zhang DD, Gao XM, Zhao YQ, Hou CC, Zhu JQ., Fish Physiol Biochem. October 1, 2017; 43 (5): 1351-1371.


The far C-terminus of MCAK regulates its conformation and spindle pole focusing., Zong H, Carnes SK, Moe C, Walczak CE, Ems-McClung SC., Mol Biol Cell. May 1, 2016; 27 (9): 1451-64.                


The Ran-GTP gradient spatially regulates XCTK2 in the spindle., Weaver LN, Ems-McClung SC, Chen SH, Yang G, Shaw SL, Walczak CE., Curr Biol. June 1, 2015; 25 (11): 1509-14.


Genome-wide expression profile of the response to spinal cord injury in Xenopus laevis reveals extensive differences between regenerative and non-regenerative stages., Lee-Liu D, Moreno M, Almonacid LI, Tapia VS, Muñoz R, von Marées J, Gaete M, Melo F, Larraín J., Neural Dev. May 22, 2014; 9 12.              


Molecular characterization and expression analysis of a KIFC1-like kinesin gene in the testis of Eumeces chinensis., Hu JR, Liu M, Wang DH, Hu YJ, Tan FQ, Yang WX., Mol Biol Rep. September 29, 2013; .


Characterization and expression pattern of KIFC1-like kinesin gene in the testis of the Macrobrachium nipponense with discussion of its relationship with structure lamellar complex (LCx) and acroframosome (AFS)., Wang YT, Mao H, Hou CC, Sun X, Wang DH, Zhou H, Yang WX., Mol Biol Rep. July 1, 2012; 39 (7): 7591-8.


Proper organization of microtubule minus ends is needed for midzone stability and cytokinesis., Cai S, Weaver LN, Ems-McClung SC, Walczak CE., Curr Biol. May 11, 2010; 20 (9): 880-5.


Microtubule organization by the antagonistic mitotic motors kinesin-5 and kinesin-14., Hentrich C, Surrey T., J Cell Biol. May 3, 2010; 189 (3): 465-80.            


Kinesin-14 family proteins HSET/XCTK2 control spindle length by cross-linking and sliding microtubules., Cai S, Weaver LN, Ems-McClung SC, Walczak CE., Mol Biol Cell. March 1, 2009; 20 (5): 1348-59.


The marine natural product adociasulfate-2 as a tool to identify the MT-binding region of kinesins., Brier S, Carletti E, DeBonis S, Hewat E, Lemaire D, Kozielski F., Biochemistry. December 26, 2006; 45 (51): 15644-53.


Importin alpha/beta and Ran-GTP regulate XCTK2 microtubule binding through a bipartite nuclear localization signal., Ems-McClung SC, Zheng Y, Walczak CE., Mol Biol Cell. January 1, 2004; 15 (1): 46-57.


The kinesin-related protein, HSET, opposes the activity of Eg5 and cross-links microtubules in the mammalian mitotic spindle., Mountain V, Simerly C, Howard L, Ando A, Schatten G, Compton DA., J Cell Biol. October 18, 1999; 147 (2): 351-66.                    


Tctex3, related to Drosophila polycomblike, is expressed in male germ cells and mapped to the mouse t-complex., Kawakami S, Mitsunaga K, Kikuti YY, Ando A, Inoko H, Yamamura K, Abe K., Mamm Genome. November 1, 1998; 9 (11): 874-80.


A model for the proposed roles of different microtubule-based motor proteins in establishing spindle bipolarity., Walczak CE, Vernos I, Mitchison TJ, Karsenti E, Heald R., Curr Biol. July 1, 1998; 8 (16): 903-13.


XCTK2: a kinesin-related protein that promotes mitotic spindle assembly in Xenopus laevis egg extracts., Walczak CE, Verma S, Mitchison TJ., J Cell Biol. February 24, 1997; 136 (4): 859-70.                

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