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Molecular basis for inner kinetochore configuration through RWD domain–peptide interactions

机译:通过RWD结构域-肽相互作用的内部线粒体构型的分子基础

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摘要

Kinetochores are dynamic cellular structures that connect chromosomes to microtubules. They form from multi‐protein assemblies that are evolutionarily conserved between yeasts and humans. One of these assemblies—COMA—consists of subunits Ame1CENP‐U, Ctf19CENP‐P, Mcm21CENP‐O and Okp1CENP‐Q. A description of COMA molecular organization has so far been missing. We defined the subunit topology of COMA, bound with inner kinetochore proteins Nkp1 and Nkp2, from the yeast Kluyveromyces lactis, with nanoflow electrospray ionization mass spectrometry, and mapped intermolecular contacts with hydrogen‐deuterium exchange coupled to mass spectrometry. Our data suggest that the essential Okp1 subunit is a multi‐segmented nexus with distinct binding sites for Ame1, Nkp1‐Nkp2 and Ctf19‐Mcm21. Our crystal structure of the Ctf19‐Mcm21 RWD domains bound with Okp1 shows the molecular contacts of this important inner kinetochore joint. The Ctf19‐Mcm21 binding motif in Okp1 configures a branch of mitotic inner kinetochores, by tethering Ctf19‐Mcm21 and Chl4CENP‐N‐Iml3CENP‐L. Absence of this motif results in dependence on the mitotic checkpoint for viability.
机译:动植物是将染色体连接至微管的动态细胞结构。它们由酵母和人类之间进化上保守的多蛋白组装形成。这些程序集之一(COMA)包含亚基Ame1 CENP‐U ,Ctf19 CENP‐P ,Mcm21 CENP‐O 和Okp1 CENP-Q 。到目前为止,缺少COMA分子组织的描述。我们定义了COMA的亚基拓扑结构,结合了乳酸克鲁维酵母的内部线粒体蛋白Nkp1和Nkp2,并用纳流电喷雾电离质谱分析了分子间的接触,并与氢氘交换耦合了质谱。我们的数据表明,必需的Okp1亚基是一个多段的联系,具有针对Ame1,Nkp1-Nkp2和Ctf19-Mcm21的独特结合位点。我们与Okp1结合的Ctf19-Mcm21 RWD结构域的晶体结构显示了这个重要的内部动粒关节的分子接触。 Okp1中的Ctf19‐Mcm21结合基序通过束缚Ctf19‐Mcm21和Chl4 CENP‐N ‐Iml3 CENP‐L 构成有丝分裂内部动植物的一个分支。缺少该基序导致依赖于有丝分裂检查点的生存能力。

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