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首页> 外文期刊>Molecular and Cellular Biology >Fission Yeast Homologs of Human CENP-B Have Redundant Functions Affecting Cell Growth and Chromosome Segregation
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Fission Yeast Homologs of Human CENP-B Have Redundant Functions Affecting Cell Growth and Chromosome Segregation

机译:人类CENP-B的裂变酵母同源物具有影响细胞生长和染色体分离的冗余功能。

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Two functionally important DNA sequence elements in centromeres of the fission yeast Schizosaccharomyces pombe are the centromeric central core and the K-type repeat. Both of these DNA elements show internal functional redundancy that is not correlated with a conserved DNA sequence. Specific, but degenerate, sequences in these elements are bound in vitro by the S. pombeDNA-binding proteins Abp1p (also called Cbp1p) and Cbhp, which are related to the mammalian centromere DNA-binding protein CENP-B. In this study, we determined that Abp1p binds to at least one of its target sequences within S. pombe centromere II central core (cc2) DNA with an affinity (Ks = 7 × 109 M?1) higher than those of other known centromere DNA-binding proteins for their cognate targets. In vivo, epitope-tagged Cbhp associated with centromeric K repeat chromatin, as well as with noncentromeric regions. Likeabp1+/cbp1 +, we found thatcbh + is not essential in fission yeast, but a strain carrying deletions of both genes (Δabp1 Δcbh) is extremely compromised in growth rate and morphology and missegregates chromosomes at very high frequency. The synergism between the two null mutations suggests that these proteins perform redundant functions in S. pombe chromosome segregation. In vitro assays with cell extracts with these proteins depleted allowed the specific assignments of several binding sites for them within cc2 and the K-type repeat. Redundancy observed at the centromere DNA level appears to be reflected at the protein level, as no single member of the CENP-B-related protein family is essential for proper chromosome segregation in fission yeast. The relevance of these findings to mammalian centromeres is discussed.
机译:裂殖酵母裂殖酵母着丝粒中两个功能上重要的DNA序列元件是着丝粒中心核心和K型重复序列。这两个DNA元素均显示出内部功能冗余,与保守的DNA序列无关。这些元素中特定但简并的序列在体外被 S结合。绒球DNA结合蛋白Abp1p(也称为Cbp1p)和Cbhp,与哺乳动物着丝粒DNA结合蛋白CENP-B有关。在这项研究中,我们确定Abp1p与 S内的至少一个靶序列结合。 pombe 着丝粒II中央核(cc2)DNA具有亲和力( K s = 7×10 9 M ? 1 )高于其他已知着丝粒DNA结合蛋白的同源靶标。在体内,抗原决定簇标记的Cbhp与着丝粒K重复染色质以及非着丝粒区域相关。像 abp1 + / cbp1 + 一样,我们发现 cbh + 不是必需的在裂变酵母中,但是携带两个基因(Δ abp1Δcbh)缺失的菌株在生长速率和形态上都受到极大损害,并且染色体错解的频率很高。两个无效突变之间的协同作用表明这些蛋白质在 S中执行冗余功能。 pombe 染色体分离。用这些蛋白质被耗尽的细胞提取物进行的体外测定允许在cc2和K型重复序列内为其指定几个结合位点。在着丝粒DNA水平上观察到的冗余似乎反映在蛋白质水平上,因为CENP-B相关蛋白家族中没有单个成员对于裂殖酵母中正确的染色体分离是必不可少的。讨论了这些发现与哺乳动物着丝粒的相关性。

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