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着丝粒蛋白B的三个裂殖酵母同源物之间的功能冗余、不同定位及相互作用。

Functional redundancies, distinct localizations and interactions among three fission yeast homologs of centromere protein-B.

作者信息

Irelan J T, Gutkin G I, Clarke L

机构信息

Department of Molecular, Cellular and Developmental Biology, University of California, Santa Barbara, California 93106, USA.

出版信息

Genetics. 2001 Mar;157(3):1191-203. doi: 10.1093/genetics/157.3.1191.

Abstract

Several members of protein families that are conserved in higher eukaryotes are known to play a role in centromere function in the fission yeast Schizosaccharomyces pombe, including two homologs of the mammalian centromere protein CENP-B, Abp1p and Cbh1p. Here we characterize a third S. pombe CENP-B homolog, Cbh2p (CENP-B homolog 2). cbh2Delta strains exhibited a modest elevation in minichromosome loss, similar to cbh1Delta or abp1Delta strains. cbh2Delta cbh1Delta strains showed little difference in growth or minichromosome loss rate when compared to single deletion strains. In contrast, cbh2Delta abp1Delta strains displayed dramatic morphological and chromosome segregation defects, as well as enhancement of the slow-growth phenotype of abp1Delta strains, indicating partial functional redundancy between these proteins. Both cbh2Delta abp1Delta and cbh1Delta abp1Delta strains also showed strongly enhanced sensitivity to a microtubule-destabilizing drug, consistent with a mitotic function for these proteins. Cbh2p was localized to the central core and core-associated repeat regions of centromeric heterochromatin, but not at several other centromeric and arm locations tested. Thus, like its mammalian counterpart, Cbh2p appeared to be localized exclusively to a portion of centromeric heterochromatin. In contrast, Abp1p was detected in both centromeric heterochromatin and in chromatin at two of three replication origins tested. Cbh2p and Abp1p homodimerized in the budding yeast two-hybrid assay, but did not interact with each other. These results suggest that indirect cooperation between different CENP-B-like DNA binding proteins with partially overlapping chromatin distributions helps to establish a functional centromere.

摘要

已知在高等真核生物中保守的几个蛋白质家族成员在裂殖酵母粟酒裂殖酵母的着丝粒功能中发挥作用,包括哺乳动物着丝粒蛋白CENP - B的两个同源物Abp1p和Cbh1p。在这里,我们鉴定了粟酒裂殖酵母的第三个CENP - B同源物Cbh2p(CENP - B同源物2)。与cbh1Δ或abp1Δ菌株类似,cbh2Δ菌株的小染色体丢失略有增加。与单缺失菌株相比,cbh2Δcbh1Δ菌株在生长或小染色体丢失率方面几乎没有差异。相反,cbh2Δabp1Δ菌株表现出明显的形态和染色体分离缺陷,以及abp1Δ菌株缓慢生长表型的增强,表明这些蛋白质之间存在部分功能冗余。cbh2Δabp1Δ和cbh1Δabp1Δ菌株对微管解聚药物的敏感性也都显著增强,这与这些蛋白质的有丝分裂功能一致。Cbh2p定位于着丝粒异染色质的中央核心和与核心相关的重复区域,但在所测试的其他几个着丝粒和臂位置未检测到。因此,与它的哺乳动物对应物一样,Cbh2p似乎仅定位于着丝粒异染色质的一部分。相比之下,在测试的三个复制起点中的两个,在着丝粒异染色质和染色质中都检测到了Abp1p。在芽殖酵母双杂交试验中Cbh2p和Abp1p形成同二聚体,但它们彼此不相互作用。这些结果表明,具有部分重叠染色质分布的不同CENP - B样DNA结合蛋白之间的间接合作有助于建立功能性着丝粒。

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