首页> 外文期刊>Molecular biology of the cell >The N-terminal tail of C. elegans CENP-A interacts with KNL-2 and is essential for centromeric chromatin assembly
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The N-terminal tail of C. elegans CENP-A interacts with KNL-2 and is essential for centromeric chromatin assembly

机译:C. Elegans CENP-A的N末端尾部与KNL-2相互作用,对于焦化染色质组件至关重要

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Centromeres are epigenetically defined by the centromere-specific histone H3 variant CENP-A. Specialized loading machinery, including the histone chaperone HJURP/Scm3, participates in CENP-A nucleosome assembly. However, Scm3/HJURP is missing from multiple lineages, including nematodes, with CENP-A-dependent centromeres. Here, we show that the extended N-terminal tail of Caenorhabditis elegans CENP-A contains a predicted structured region that is essential for centromeric chromatin assembly; removal of this region prevents CENP-A loading, resulting in failure of kinetochore assembly and defective chromosome condensation. By contrast, the N-tail mutant CENP-A localizes normally in the presence of endogenous CENP-A. The portion of the N-tail containing the predicted structured region binds to KNL-2, a conserved SANTA domain and Myb domain-containing protein (referred to as M18BP1 in vertebrates) specifically involved in CENP-A chromatin assembly. This direct interaction is conserved in the related nematode Caenorhabditis briggsae , despite divergence of the N-tail and KNL-2 primary sequences. Thus, the extended N-tail of CENP-A is essential for CENP-A chromatin assembly in C. elegans and partially substitutes for the function of Scm3/HJURP, in that it mediates a direct interaction between CENP-A and KNL-2. These results highlight an evolutionary variation on centromeric chromatin assembly in the absence of a dedicated CENP-A–specific chaperone/targeting factor of the Scm3/HJURP family.
机译:Centromeres由Centromere特异性组蛋白H3变体CENP-A进行齿性定义。专门的装载机械,包括组蛋白伴侣Hjurp / SCM3,参与CENP-A核心组件。但是,来自多个谱系的SCM3 / Hjurp缺少,包括线虫,带有CENP-A依赖的Centromeres。在这里,我们表明CaenorhabditiseDegans CENP-A的延伸N末端尾部包含预测的结构区域,对于焦化染色质组件至关重要;去除该区域可防止CENP-A加载,导致KINETOCHORE组件的失效和染色体染色体缩合。相反,N-尾突变体CENP-A通常在内源CENP-A存在下定位。含有预测的结构区域的N-尾部的部分与KNL-2,保守的SANTA结构域和MYB域域(称为脊椎动物的M18BP1)结合,特异性地参与CENP-A染色质组件。尽管N尾和KNL-2初级序列分解,但这种直接相互作用在相关的Nematode Caenorhabditis Briggsae中保守。因此,CENP-A的延长的N-尾对于CenP-A染色质组件中的CENP-A染色质组件是必不可少的,并且部分替代SCM3 / hjurp的功能,因为它介导CENP-A和KNL-2之间的直接相互作用。这些结果突出了在没有专用的CENP-A特异性伴侣/靶向因子的SCM3 / Hjurp家族的甲胞嘧啶组件上的进化变化。

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