A Mitotic Lamin B Matrix Induced by RanGTP Required for Spindle Assembly

Mitotic spindle morphogenesis is a series of highly coordinated movements that lead to chromosome segregation and cytokinesis. We report that the intermediate filament protein lamin B, a component of the interphase nuclear lamina, functions in spindle assembly. Lamin B assembled into a matrix-like n...

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Veröffentlicht in:Science (American Association for the Advancement of Science) 2006-03, Vol.311 (5769), p.1887-1893
Hauptverfasser: Tsai, Ming-Ying, Wang, Shusheng, Heidinger, Jill M., Shumaker, Dale K., Adam, Stephen A., Goldman, Robert D., Zheng, Yixian
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Sprache:eng
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Zusammenfassung:Mitotic spindle morphogenesis is a series of highly coordinated movements that lead to chromosome segregation and cytokinesis. We report that the intermediate filament protein lamin B, a component of the interphase nuclear lamina, functions in spindle assembly. Lamin B assembled into a matrix-like network in mitosis through a process that depended on the presence of the guanosine triphosphate-bound form of the small guanosine triphosphatase Ran. Depletion of lamin B resulted in defects in spindle assembly. Dominant negative mutant lamin B proteins that disrupt lamin B assembly in interphase nuclei also disrupted spindle assembly in mitosis. Furthermore, lamin B was essential for the formation of the mitotic matrix that tethers a number of spindle assembly factors. We propose that lamin B is a structural component of the long-sought-after spindle matrix that promotes microtubule assembly and organization in mitosis.
ISSN:0036-8075
1095-9203
DOI:10.1126/science.1122771