Jensen S, Segal M, Clarke D J, Reed S I
Department of Molecular Biology, The Scripps Research Institute, La Jolla, California 92037, USA.
J Cell Biol. 2001 Jan 8;152(1):27-40. doi: 10.1083/jcb.152.1.27.
In Saccharomyces cerevisiae, the metaphase-anaphase transition is initiated by the anaphase-promoting complex-dependent degradation of Pds1, whereby Esp1 is activated to promote sister chromatid separation. Although this is a fundamental step in the cell cycle, little is known about the regulation of Esp1 and how loss of cohesion is coordinated with movement of the anaphase spindle. Here, we show that Esp1 has a novel role in promoting anaphase spindle elongation. The localization of Esp1 to the spindle apparatus, analyzed by live cell imaging, is regulated in a manner consistent with a function during anaphase B. The protein accumulates in the nucleus in G2 and is mobilized onto the spindle pole bodies and spindle midzone at anaphase onset, where it persists into midanaphase. Association with Pds1 occurs during S phase and is required for efficient nuclear targeting of Esp1. Spindle association is not fully restored in pds1 mutants expressing an Esp1-nuclear localization sequence fusion protein, suggesting that Pds1 is also required to promote Esp1 spindle binding. In agreement, Pds1 interacts with the spindle at the metaphase-anaphase transition and a fraction remains at the spindle pole bodies and the spindle midzone in anaphase cells. Finally, mutational analysis reveals that the conserved COOH-terminal region of Esp1 is important for spindle interaction.
在酿酒酵母中,中期到后期的转变由后期促进复合物依赖的Pds1降解引发,由此激活Esp1以促进姐妹染色单体分离。尽管这是细胞周期中的一个基本步骤,但对于Esp1的调控以及黏连丧失如何与后期纺锤体的运动协调,人们了解甚少。在这里,我们表明Esp1在促进后期纺锤体延长方面具有新的作用。通过活细胞成像分析,Esp1定位于纺锤体装置的过程,其调控方式与后期B阶段的功能一致。该蛋白在G2期在细胞核中积累,并在后期开始时转移到纺锤极体和纺锤体中区,在那里持续到中期后期。与Pds1的结合发生在S期,是Esp1有效定位于细胞核所必需的。在表达Esp1-核定位序列融合蛋白的pds1突变体中,纺锤体的结合并未完全恢复,这表明Pds1对于促进Esp1与纺锤体的结合也是必需的。与此一致的是,Pds1在中期到后期的转变时与纺锤体相互作用,并且一部分在后期细胞中留在纺锤极体和纺锤体中区。最后,突变分析表明Esp1保守的COOH末端区域对于与纺锤体的相互作用很重要。