Tolić Iva M
Division of Molecular Biology, Ruđer Bošković Institute, Bijenička cesta 54, 10000, Zagreb, Croatia.
Eur Biophys J. 2018 Apr;47(3):191-203. doi: 10.1007/s00249-017-1244-4. Epub 2017 Jul 19.
When a cell starts to divide, it forms a spindle, a micro-machine made of microtubules, which separates the duplicated chromosomes. The attachment of microtubules to chromosomes is mediated by kinetochores, protein complexes on the chromosome. Spindle microtubules can be divided into three major classes: kinetochore microtubules, which form k-fibers ending at the kinetochore; interpolar microtubules, which extend from the opposite sides of the spindle and interact in the middle; and astral microtubules, which extend towards the cell cortex. Recent work in human cells has shown a close relationship between interpolar and kinetochore microtubules, where interpolar bundles are attached laterally to kinetochore fibers almost all along their length, acting as a bridge between sister k-fibers. Most of the interpolar bundles are attached to a pair of sister kinetochore fibers and vice versa. Thus, the spindle is made of modules consisting of a pair of sister kinetochore fibers and a bundle of interpolar microtubules that connects them. These interpolar bundles, termed bridging fibers, balance the forces acting at kinetochores and support the rounded shape of the spindle during metaphase. This review discusses the structure, function, and formation of kinetochore fibers and interpolar bundles, with an emphasis on how they interact. Their connections have an impact on the force balance in the spindle and on chromosome movement during mitosis because the forces in interpolar bundles are transmitted to kinetochore fibers and hence to kinetochores through these connections.
当细胞开始分裂时,它会形成一个纺锤体,这是一种由微管构成的微型机器,用于分离复制后的染色体。微管与染色体的附着是由动粒介导的,动粒是染色体上的蛋白质复合体。纺锤体微管可分为三大类:动粒微管,形成终止于动粒的k纤维;极间微管,从纺锤体的相对两侧延伸并在中间相互作用;星状微管,向细胞皮层延伸。最近在人类细胞中的研究表明,极间微管和动粒微管之间存在密切关系,极间微管束几乎在其整个长度上横向附着于动粒纤维,充当姐妹k纤维之间的桥梁。大多数极间微管束附着于一对姐妹动粒纤维,反之亦然。因此,纺锤体由模块组成,每个模块包含一对姐妹动粒纤维和一束连接它们的极间微管。这些极间微管束,称为桥接纤维,在中期平衡作用于动粒的力并维持纺锤体的圆形形状。本综述讨论了动粒纤维和极间微管束的结构、功能和形成,重点是它们如何相互作用。它们的连接对纺锤体中的力平衡以及有丝分裂期间的染色体运动有影响,因为极间微管束中的力通过这些连接传递到动粒纤维,进而传递到动粒。