Stowers Institute for Medical Research, Kansas City, MO.
Open University, Milton Keynes, England, UK.
J Cell Biol. 2019 Jul 1;218(7):2124-2135. doi: 10.1083/jcb.201810070. Epub 2019 May 22.
The kinetochore is a large molecular machine that attaches chromosomes to microtubules and facilitates chromosome segregation. The kinetochore includes submodules that associate with the centromeric DNA and submodules that attach to microtubules. Additional copies of several submodules of the kinetochore are added during anaphase, including the microtubule binding module Ndc80. While the factors governing plasticity are not known, they could include regulation based on microtubule-kinetochore interactions. We report that Fin1 localizes to the microtubule-proximal edge of the kinetochore cluster during anaphase based on single-particle averaging of super-resolution images. Fin1 is required for the assembly of normal levels of Dam1 and Ndc80 submodules. Levels of Ndc80 further depend on the Dam1 microtubule binding complex. Our results suggest the stoichiometry of outer kinetochore submodules is strongly influenced by factors at the kinetochore-microtubule interface such as Fin1 and Dam1, and phosphorylation by cyclin-dependent kinase. Outer kinetochore stoichiometry is remarkably plastic and responsive to microtubule-proximal regulation.
着丝粒是一种将染色体附着到微管上并促进染色体分离的大型分子机器。着丝粒包括与着丝粒 DNA 结合的亚基和与微管结合的亚基。在后期,着丝粒的几个亚基的额外副本被添加,包括微管结合模块 Ndc80。虽然控制可塑性的因素尚不清楚,但它们可能包括基于微管-着丝粒相互作用的调节。我们报告说,根据超分辨率图像的单粒子平均,Fin1 在后期定位于着丝粒簇的微管近端边缘。Fin1 对于组装正常水平的 Dam1 和 Ndc80 亚基是必需的。Ndc80 的水平进一步取决于 Dam1 微管结合复合物。我们的结果表明,外着丝粒亚基的化学计量强烈受到着丝粒-微管界面上的因素的影响,例如 Fin1 和 Dam1,以及细胞周期蛋白依赖性激酶的磷酸化。外着丝粒化学计量具有惊人的可塑性,并对外周微管调节做出响应。