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动粒-微管附着位点的分子结构

Molecular architecture of a kinetochore-microtubule attachment site.

作者信息

Joglekar Ajit P, Bouck David C, Molk Jeffrey N, Bloom Kerry S, Salmon Edward D

机构信息

Department of Biology, University of North Carolina, 607 Fordham hall, CB# 3280, Chapel Hill, NC 27599, USA.

出版信息

Nat Cell Biol. 2006 Jun;8(6):581-5. doi: 10.1038/ncb1414. Epub 2006 May 21.

Abstract

Kinetochore attachment to spindle microtubule plus-ends is necessary for accurate chromosome segregation during cell division in all eukaryotes. The centromeric DNA of each chromosome is linked to microtubule plus-ends by eight structural-protein complexes. Knowing the copy number of each of these complexes at one kinetochore-microtubule attachment site is necessary to understand the molecular architecture of the complex, and to elucidate the mechanisms underlying kinetochore function. We have counted, with molecular accuracy, the number of structural protein complexes in a single kinetochore-microtubule attachment using quantitative fluorescence microscopy of GFP-tagged kinetochore proteins in the budding yeast Saccharomyces cerevisiae. We find that relative to the two Cse4p molecules in the centromeric histone, the copy number ranges from one or two for inner kinetochore proteins such as Mif2p, to 16 for the DAM-DASH complex at the kinetochore-microtubule interface. These counts allow us to visualize the overall arrangement of a kinetochore-microtubule attachment. As most of the budding yeast kinetochore proteins have homologues in higher eukaryotes, including humans, this molecular arrangement is likely to be replicated in more complex kinetochores that have multiple microtubule attachments.

摘要

在所有真核生物的细胞分裂过程中,动粒与纺锤体微管正端的附着对于准确的染色体分离是必要的。每条染色体的着丝粒DNA通过八个结构蛋白复合体与微管正端相连。了解这些复合体在一个动粒 - 微管附着位点上各自的拷贝数,对于理解该复合体的分子结构以及阐明动粒功能的潜在机制是必要的。我们利用芽殖酵母酿酒酵母中绿色荧光蛋白标记的动粒蛋白的定量荧光显微镜技术,以分子精度计数了单个动粒 - 微管附着中结构蛋白复合体的数量。我们发现,相对于着丝粒组蛋白中的两个Cse4p分子,动粒内部蛋白如Mif2p的拷贝数范围为一或两个,而在动粒 - 微管界面处的DAM - DASH复合体的拷贝数为16个。这些计数结果使我们能够可视化动粒 - 微管附着的整体排列。由于大多数芽殖酵母动粒蛋白在包括人类在内的高等真核生物中有同源物,这种分子排列很可能在具有多个微管附着的更复杂动粒中得以复制。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/0ae9/2867088/87c1576b09a6/nihms199890f1.jpg

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