首页> 美国卫生研究院文献>Genetics >Deposition of Centromeric Histone H3 Variant CENP-A/Cse4 into Chromatin Is Facilitated by Its C-Terminal Sumoylation
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Deposition of Centromeric Histone H3 Variant CENP-A/Cse4 into Chromatin Is Facilitated by Its C-Terminal Sumoylation

机译:通过其C末端Sumoylation促进了焦化组蛋白H3变体CENP-A / CSE4进入染色质的沉积CENP-A / CSE4

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摘要

Centromeric localization of CENP-A (Cse4 in Saccharomyces cerevisiae, CID in flies, CENP-A in humans) is essential for faithful chromosome segregation. Mislocalization of overexpressed CENP-A contributes to aneuploidy in yeast, flies, and humans, and is proposed to promote tumorigenesis in human cancers. Hence, defining molecular mechanisms that promote or prevent mislocalization of CENP-A is an area of active investigation. In budding yeast, evolutionarily conserved histone chaperones Scm3 and chromatin assembly factor-1 (CAF-1) promote localization of Cse4 to centromeric and noncentromeric regions, respectively. Ubiquitin ligases, such as Psh1 and Slx5, and histone chaperones (HIR complex) regulate proteolysis of overexpressed Cse4 and prevent its mislocalization to noncentromeric regions. In this study, we have identified sumoylation sites lysine (K) 215/216 in the C terminus of Cse4, and shown that sumoylation of Cse4 K215/216 facilitates its genome-wide deposition into chromatin when overexpressed. Our results showed reduced levels of sumoylation of mutant Cse4 K215/216R/A [K changed to arginine (R) or alanine (A)] and reduced interaction of mutant Cse4 K215/216R/A with Scm3 and CAF-1 when compared to wild-type Cse4. Consistent with these results, levels of Cse4 K215/216R/A in the chromatin fraction and localization to centromeric and noncentromeric regions were reduced. Furthermore, in contrast to GAL-CSE4, which exhibits Synthetic Dosage Lethality (SDL) in psh1∆, slx5∆, and hir2∆ strains, GAL-cse4 K215/216R does not exhibit SDL in these strains. Taken together, our results show that deposition of Cse4 into chromatin is facilitated by its C-terminal sumoylation.
机译:CENP-A(CSE4在酿酒酵母中的CSE4,CID中的CESE4,人类中的CENP-A中的CESE4)对于忠实的染色体隔离是必不可少的。过表达CENP-A的错误定位促进酵母,苍蝇和人类的非整倍性,并且提出促进人类癌症中的肿瘤内血。因此,定义促进或预防CENP-A的错误固定化的分子机制是积极调查的领域。在萌芽酵母中,进化水保守的组蛋白伴侣SCM3和染色质组合因子-1(CAF-1)促进CSE4的定位分别为焦化和非浓度区域。泛素连接酶,如PSH1和SLX5,以及组蛋白伴侣(HIR络合物)调节过表达CSE4的蛋白水解,并防止其对非浓缩区的错误定位。在该研究中,我们已经鉴定了CSE4的C末端中的Sumoylation位点(K)215/216,并表明CSE4 K215 / 216的平均促进其在过度抑制时进入染色质的基因组沉积。我们的结果表明,突变体CSE4K215 / 216R / A的平均水平降低,[K变为精氨酸(R)或丙氨酸(A)],与野生相比,突变体CSE4 K215 / 216R / A的相互作用减少了SCM3和CAF-1 -Type CSE4。与这些结果一致,降低了染色质级分和焦化和非浓度区域的定位中的CSE4 K215 / 216R / A水平。此外,与PSH1δ,SLX5δ和HIR2Δ菌株中的合成剂量致死(SDL)形成的GAL-CSE4相反,GAL-CSE4K215 / 216R在这些菌株中没有表现出SDL。在一起,我们的结果表明,通过其C末端Sufoylation促进CSE4沉积CSE4进入染色质。

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