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The majority of human replication protein A remains complexed throughout the cell cycle

机译:大多数人类复制蛋白A在整个细胞周期中都保持复杂状态

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Replication Protein A (RPA), the replicative singlestrand DNA binding protein from eukaryotic cells, is a stable heterotrimeric complex consisting of three polypeptides. Cytological studies have investigated the subcellular distribution and association characteristics of the three RPA subunits during different stages of the cell cycle with varying results. In this study, various HeLa cell fractions were subjected to separation by either immunoprecipitation or velocity sedimentation. These separations were evaluated by immunoblotting for specific RPA subunits to determine whether the RPA in these fractions retains its heterotrimeric association. Immunoprecipitation of either the large (RPA70) or middle-sized (RPA32) subunit of RPA followed by immunoblotting for the other subunits demonstrate that RPA remains complexed throughout the G_1, S and G_2 phases of the cell cycle. Immunoprecipitation and sedimentation separations of both the nucleosolic and chromatinbound RPA populations from both cycling and nocodazole-blocked cells showed that the majority of RPA remains complexed under all conditions examined. Consistent with previous reports, hypotonic extracts from 293 cells were shown to contain some RPA32 not complexed with RPA70. These results indicate that in some cell types, extracts may contain small amounts of RPA32 free of RPA70; however, in HeLa cells the majority of RPA clearly remains complexed as a heterotrimer throughout he cell cycle.
机译:复制蛋白A(RPA)是来自真核细胞的复制性单链DNA结合蛋白,是一种稳定的异源三聚体复合物,由三个多肽组成。细胞学研究已经研究了三个RPA亚基在细胞周期不同阶段的亚细胞分布和缔合特征,结果各不相同。在这项研究中,通过免疫沉淀或速度沉淀法对各种HeLa细胞级分进行了分离。通过针对特定RPA亚基的免疫印迹评估这些分离,以确定这些级分中的RPA是否保留其异源三聚体缔合。对RPA的大(RPA70)或中型(RPA32)亚基进行免疫沉淀,然后对其他亚基进行免疫印迹,这表明RPA在细胞周期的G_1,S和G_2阶段均保持复合状态。从循环细胞和诺考达唑阻滞的细胞中,核仁和染色质结合的RPA群体的免疫沉淀和沉降分离表明,大多数RPA在所有检查条件下均保持复合。与以前的报道一致,显示来自293细胞的低渗提取物含有一些RPA32,未与RPA70形成复合物。这些结果表明,在某些细胞类型中,提取物可能含有少量不含RPA70的RPA32。然而,在HeLa细胞中,大多数RPA显然在整个细胞周期中仍以杂三聚体形式保持复杂。

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