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本文引用的文献

1
ZW10 links mitotic checkpoint signaling to the structural kinetochore.ZW10将有丝分裂检查点信号传导与结构性动粒相连。
J Cell Biol. 2005 Apr 11;169(1):49-60. doi: 10.1083/jcb.200411118.
2
Molecular organization of the Ndc80 complex, an essential kinetochore component.Ndc80复合体的分子组织,一种重要的动粒成分。
Proc Natl Acad Sci U S A. 2005 Apr 12;102(15):5363-7. doi: 10.1073/pnas.0501168102. Epub 2005 Apr 4.
3
Purification of the Ndc80 kinetochore subcomplex from Xenopus eggs.从非洲爪蟾卵中纯化Ndc80动粒亚复合体。
Methods Mol Biol. 2005;296:383-91. doi: 10.1385/1-59259-857-9:383.
4
Hec1 and nuf2 are core components of the kinetochore outer plate essential for organizing microtubule attachment sites.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。
Mol Biol Cell. 2005 Feb;16(2):519-31. doi: 10.1091/mbc.e04-09-0852. Epub 2004 Nov 17.
5
The dynamic kinetochore-microtubule interface.动态动粒-微管界面
J Cell Sci. 2004 Nov 1;117(Pt 23):5461-77. doi: 10.1242/jcs.01536.
6
A conserved Mis12 centromere complex is linked to heterochromatic HP1 and outer kinetochore protein Zwint-1.一个保守的Mis12着丝粒复合体与异染色质HP1和外着丝粒蛋白Zwint-1相关联。
Nat Cell Biol. 2004 Nov;6(11):1135-41. doi: 10.1038/ncb1187. Epub 2004 Oct 24.
7
Conformational changes in CLIP-170 regulate its binding to microtubules and dynactin localization.CLIP-170的构象变化调节其与微管的结合以及动力蛋白激活蛋白的定位。
J Cell Biol. 2004 Sep 27;166(7):1003-14. doi: 10.1083/jcb.200402082. Epub 2004 Sep 20.
8
A conserved protein network controls assembly of the outer kinetochore and its ability to sustain tension.一个保守的蛋白质网络控制着外着丝粒的组装及其承受张力的能力。
Genes Dev. 2004 Sep 15;18(18):2255-68. doi: 10.1101/gad.1234104.
9
The vertebrate Ndc80 complex contains Spc24 and Spc25 homologs, which are required to establish and maintain kinetochore-microtubule attachment.脊椎动物的Ndc80复合体包含Spc24和Spc25的同源物,它们是建立和维持动粒-微管附着所必需的。
Curr Biol. 2004 Jan 20;14(2):131-7. doi: 10.1016/j.cub.2003.12.058.
10
Hierarchical assembly of the budding yeast kinetochore from multiple subcomplexes.芽殖酵母动粒由多个亚复合体进行分层组装。
Genes Dev. 2003 Dec 1;17(23):2902-21. doi: 10.1101/gad.1144403. Epub 2003 Nov 21.

测量各组分之间的化学计量关系和物理相互作用,有助于阐明脊椎动物动粒的结构。

Measuring the stoichiometry and physical interactions between components elucidates the architecture of the vertebrate kinetochore.

作者信息

Emanuele Michael J, McCleland Mark L, Satinover David L, Stukenberg P Todd

机构信息

Department of Biochemistry and Molecular Genetics, University of Virginia Medical School, Charlottesville, VA 22908, USA.

出版信息

Mol Biol Cell. 2005 Oct;16(10):4882-92. doi: 10.1091/mbc.e05-03-0239. Epub 2005 Aug 3.

DOI:10.1091/mbc.e05-03-0239
PMID:16079178
原文链接:https://pmc.ncbi.nlm.nih.gov/articles/PMC1237090/
Abstract

Vertebrate kinetochores contain over 50 different proteins organized into three distinct regions: the inner plate, outer plate, and fibrous corona. The present study characterizes numerous precursors of kinetochore assembly in a system free of centromeric chromatin, Xenopus extracts. Hydrodynamic analysis suggests there are a minimum of two monomeric proteins and six pre-assembled complexes that accumulate on centromeres to form the kinetochore. The inner and outer kinetochore assemble from at least two distinct kinetochore complexes containing the proteins Mis12, Zwint, and Ndc80, all of which interact by immunoprecipitation. There is also a network of interactions between the fibrous corona proteins that is dissociated by microtubules. We quantify the number of molecules of specific proteins assembled into a single kinetochore. There are between 800 and 1200 molecules of the measured inner and outer kinetochore proteins, demonstrating that the components in these regions are in similar stoichiometry. In contrast, the measured fibrous corona proteins are present at 250-300 molecules per kinetochore. Zwint, but not Mis12, requires the Ndc80 complex for assembly into the kinetochore. Further, Ndc80 requires Zwint for assembly, indicating a co-dependency for these two proteins. Our data provide a model for the structural architecture and assembly pathway of the vertebrate kinetochore.

摘要

脊椎动物的动粒包含50多种不同的蛋白质,这些蛋白质被组织成三个不同的区域:内板、外板和纤维冠。本研究在一个不含着丝粒染色质的系统——非洲爪蟾提取物中,对动粒组装的众多前体进行了表征。流体动力学分析表明,至少有两种单体蛋白和六种预组装复合物在着丝粒上积累以形成动粒。内、外动粒由至少两种不同的动粒复合物组装而成,这些复合物包含Mis12、Zwint和Ndc80蛋白,所有这些蛋白都可通过免疫沉淀相互作用。纤维冠蛋白之间也存在一个由微管解离的相互作用网络。我们对组装到单个动粒中的特定蛋白质分子数量进行了量化。所测量的内、外动粒蛋白有800到1200个分子,这表明这些区域的成分具有相似的化学计量。相比之下,所测量的纤维冠蛋白每个动粒存在250 - 300个分子。Zwint,但不是Mis12,需要Ndc80复合物才能组装到动粒中。此外,Ndc80组装需要Zwint,这表明这两种蛋白质相互依赖。我们的数据为脊椎动物动粒的结构架构和组装途径提供了一个模型。