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首页> 外文期刊>Genetics: A Periodical Record of Investigations Bearing on Heredity and Variation >Kinetochore Components Required for Centromeric Chromatin Assembly Are Impacted by Msc1 in Schizosaccharomyces pombe
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Kinetochore Components Required for Centromeric Chromatin Assembly Are Impacted by Msc1 in Schizosaccharomyces pombe

机译:焦化染色质组件所需的Kinetochore组分受到Schizosaccharomyces Pombe的MSC1的影响

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Eukaryotic chromosome segregation requires a protein complex known as the kinetochore that mediates attachment between mitotic spindle microtubules and centromere-specific nucleosomes composed of the widely conserved histone variant CENP-A. Mutations in kinetochore proteins of the fission yeast Schizosaccharomyces pombe lead to chromosome missegregation such that daughter cells emerge from mitosis with unequal DNA content. We find that multiple copies of Msc1-a fission yeast homolog of the KDM5 family of proteins-suppresses the temperature-sensitive growth defect of several kinetochore mutants, including mis16 and mis18, as well as mis6, mis15, and mis17, components of the Constitutive Centromere Associated Network ( CCAN). On the other hand, deletion of msc1 exacerbates both the growth defect and chromosome missegregation phenotype of each of these mutants. The C-terminal PHD domains of Msc1, previously shown to associate with a histone deacetylase activity, are necessary for Msc1 function when kinetochore mutants are compromised. We also demonstrate that, in the absence of Msc1, the frequency of localization to the kinetochore of Mis16 and Mis15 is altered from wild-type cells. As we show here for msc1, others have shown that elevating cnp1 levels acts similarly to promote survival of the CCAN mutants. The rescue of mis15 and mis17 by cnp1 is, however, independent of msc1. Thus, Msc1 appears to contribute to the chromatin environment at the centromere: the absence of Msc1 sensitizes cells to perturbations in kinetochore function, while elevating Msc1 overcomes loss of function of critical components of the kinetochore and centromere.
机译:真核染色体隔离需要称为Kinetochore的蛋白质复合体,该蛋白质复合体介导有丝状纺锤体微管和由广泛保守的组蛋白变体CENP-A组成的丝状纺锤体微管和焦点特异性核体之间的蛋白质复合物。裂变酵母Schizosaccharomyces Pombe的Kinetochore蛋白质中的突变导致染色体错误解测定,使得子细胞从有比度的DNA含量出现有丝分裂。我们发现,KDM5蛋白的裂变酵母同源物的多个拷贝 - 抑制了几种动力学突变体的温度敏感生长缺陷,包括MIS16和MIS18,以及MIS6,MIS15和MIS17,构成构成部分Centromere相关网络(CCAN)。另一方面,MSC1的缺失加剧了这些突变体中的每一个的生长缺陷和染色体错误的表型。当Kinetochore突变体受到损害时,MSC1的MSC1的C末端Phd结构域是MSC1函数所必需的。我们还证明,在没有MSC1的情况下,从野生型电池改变MIS16和MIS15的局部化学频率。正如我们在此显示MSC1,其他人表明,升高CNP1水平的作用类似地促进CCAN突变体的存活。然而,CNP1的MIS15和MIS17的救援独立于MSC1。因此,MSC1似乎有助于Centromere的染色质环境:没有MSC1敏感细胞在Kinetochore函数中扰动,同时升高MSC1克服了Kinetochore和Centromere的关键部件的功能丧失。

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