Karsenti E, Vernos I
Cell Biology and Biophysics Program, EMBL, Meyerhofstrasse 1, 69117 Heidelberg, Germany.
Science. 2001 Oct 19;294(5542):543-7. doi: 10.1126/science.1063488.
The mitotic spindle is a highly dynamic molecular machine composed of tubulin, motors, and other molecules. It assembles around the chromosomes and distributes the duplicated genome to the daughter cells during mitosis. The biochemical and physical principles that govern the assembly of this machine are still unclear. However, accumulated discoveries indicate that chromosomes play a key role. Apparently, they generate a local cytoplasmic state that supports the nucleation and growth of microtubules. Then soluble and chromosome-associated molecular motors sort them into a bipolar array. The emerging picture is that spindle assembly is governed by a combination of modular principles and that their relative contribution may vary in different cell types and in various organisms.
有丝分裂纺锤体是一种由微管蛋白、马达蛋白和其他分子组成的高度动态的分子机器。它围绕染色体组装,并在有丝分裂期间将复制后的基因组分配到子细胞中。支配这一机器组装的生化和物理原理仍不清楚。然而,积累的发现表明染色体起着关键作用。显然,它们产生一种局部细胞质状态,支持微管的成核和生长。然后,可溶性和与染色体相关的分子马达将它们排列成两极阵列。新出现的情况是,纺锤体组装受模块化原理的组合支配,并且它们的相对贡献可能在不同细胞类型和各种生物体中有所不同。