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Hec1和nuf2是动粒外板的核心组成部分,对组织微管附着位点至关重要。

Hec1 and nuf2 are core components of the kinetochore outer plate essential for organizing microtubule attachment sites.

作者信息

DeLuca Jennifer G, Dong Yimin, Hergert Polla, Strauss Joshua, Hickey Jennifer M, Salmon E D, McEwen Bruce F

机构信息

Department of Biology, University of North Carolina at Chapel Hill, Chapel Hill, NC 27599, USA.

出版信息

Mol Biol Cell. 2005 Feb;16(2):519-31. doi: 10.1091/mbc.e04-09-0852. Epub 2004 Nov 17.

Abstract

A major goal in the study of vertebrate mitosis is to identify proteins that create the kinetochore-microtubule attachment site. Attachment sites within the kinetochore outer plate generate microtubule dependent forces for chromosome movement and regulate spindle checkpoint protein assembly at the kinetochore. The Ndc80 complex, comprised of Ndc80 (Hec1), Nuf2, Spc24, and Spc25, is essential for metaphase chromosome alignment and anaphase chromosome segregation. It has also been suggested to have roles in kinetochore microtubule formation, production of kinetochore tension, and the spindle checkpoint. Here we show that Nuf2 and Hec1 localize throughout the outer plate, and not the corona, of the vertebrate kinetochore. They are part of a stable "core" region whose assembly dynamics are distinct from other outer domain spindle checkpoint and motor proteins. Furthermore, Nuf2 and Hec1 are required for formation and/or maintenance of the outer plate structure itself. Fluorescence light microscopy, live cell imaging, and electron microscopy provide quantitative data demonstrating that Nuf2 and Hec1 are essential for normal kinetochore microtubule attachment. Our results indicate that Nuf2 and Hec1 are required for organization of stable microtubule plus-end binding sites in the outer plate that are needed for the sustained poleward forces required for biorientation at kinetochores.

摘要

脊椎动物有丝分裂研究的一个主要目标是鉴定出形成动粒-微管附着位点的蛋白质。动粒外板内的附着位点会产生依赖微管的力,用于染色体移动,并调节动粒处的纺锤体检查点蛋白组装。由Ndc80(Hec1)、Nuf2、Spc24和Spc25组成的Ndc80复合体对于中期染色体排列和后期染色体分离至关重要。也有人认为它在动粒微管形成、动粒张力产生以及纺锤体检查点中发挥作用。在此我们表明,Nuf2和Hec1定位于脊椎动物动粒的整个外板,而非纤冠。它们是一个稳定“核心”区域的一部分,其组装动态与其他外结构域纺锤体检查点蛋白和马达蛋白不同。此外,Nuf2和Hec1是外板结构自身形成和/或维持所必需的。荧光显微镜、活细胞成像和电子显微镜提供了定量数据,证明Nuf2和Hec1对于正常的动粒微管附着至关重要。我们的结果表明,Nuf2和Hec1是在外板中组织稳定的微管正端结合位点所必需的,而动粒双定向所需的持续向极力量需要这些位点。

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