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Prp20是酿酒酵母中染色体凝聚调节因子RCC1的同源物,它通过一个包含GTP结合蛋白的多组分复合物与双链DNA相互作用。

Prp20, the Saccharomyces cerevisiae homolog of the regulator of chromosome condensation, RCC1, interacts with double-stranded DNA through a multi-component complex containing GTP-binding proteins.

作者信息

Lee A, Tam R, Belhumeur P, DiPaolo T, Clark M W

机构信息

Department of Biology, McGill University, Montréal, Québec, Canada.

出版信息

J Cell Sci. 1993 Sep;106 ( Pt 1):287-98. doi: 10.1242/jcs.106.1.287.

Abstract

Prp20, a homolog to the mammalian negative regulator of chromosome condensation, RCC1, is retained on double-stranded (ds) DNA-cellulose when extracts are prepared from asynchronously growing wild-type yeast strains. Conversely, neither Prp20 from ts mutant cell extracts nor wt yeast Prp20 produced in Escherichia coli, bind to dsDNA-cellulose. In vitro reconstitution assays using E. coli-expressed Prp20 and inactivated ts mutant extracts of prp20-1 reveal that the Prp20 protein requires the assistance of other proteins in the cell extract to promote its binding to dsDNA. Immunoprecipitations and sizing-column-chromatography indicate that the Prp20 protein binds to the dsDNA column through a multicomponent complex composed of six to seven proteins, which has a collective molecular mass greater than 150,000 Da. At least three of the members of this Prp20 complex will bind GTP in vitro. Moreover, the Prp20 complex is shown to specifically lose its ability to bind dsDNA during the DNA replication phase of the cell cycle. This loss of dsDNA binding during the S phase of the cell cycle does not affect the proper organization of the nucleoplasm and appears to be reversed before the cell enters mitosis.

摘要

Prp20是哺乳动物染色体凝聚负调控因子RCC1的同源物,当从异步生长的野生型酵母菌株制备提取物时,它会保留在双链(ds)DNA纤维素上。相反,来自温度敏感(ts)突变体细胞提取物的Prp20以及在大肠杆菌中产生的野生型酵母Prp20都不与dsDNA纤维素结合。使用大肠杆菌表达的Prp20和prp20 - 1的失活ts突变体提取物进行的体外重建试验表明,Prp20蛋白需要细胞提取物中其他蛋白质的协助来促进其与dsDNA的结合。免疫沉淀和尺寸排阻柱色谱表明,Prp20蛋白通过由六到七种蛋白质组成的多组分复合物与dsDNA柱结合,该复合物的总分子量大于150,000 Da。该Prp20复合物的至少三个成员在体外会结合GTP。此外,Prp20复合物在细胞周期的DNA复制阶段显示出特异性丧失其与dsDNA结合的能力。细胞周期S期这种dsDNA结合的丧失不影响核质的正常组织,并且在细胞进入有丝分裂之前似乎会逆转。

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