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核输入蛋白 Kap95 和 Rfa1、Rfa2 和 Rfa3 的 C 末端对于酿酒酵母中功能性 RPA 复合物蛋白的有效核输入是必需的。

The karyopherin Kap95 and the C-termini of Rfa1, Rfa2, and Rfa3 are necessary for efficient nuclear import of functional RPA complex proteins in Saccharomyces cerevisiae.

机构信息

Department of Biology, Colgate University, Hamilton, NY 13346, USA.

出版信息

DNA Cell Biol. 2011 Sep;30(9):641-51. doi: 10.1089/dna.2010.1071. Epub 2011 Feb 20.

Abstract

Nuclear protein import in eukaryotic cells is mediated by karyopherin proteins, which bind to specific nuclear localization signals on substrate proteins and transport them across the nuclear envelope and into the nucleus. Replication protein A (RPA) is a nuclear protein comprised of three subunits (termed Rfa1, Rfa2, and Rfa3 in Saccharomyces cerevisiae) that binds single-stranded DNA and is essential for DNA replication, recombination, and repair. RPA associates with two different karyopherins in yeast, Kap95, and Msn5/Kap142. However, it is unclear which of these karyopherins is responsible for RPA nuclear import. We have generated GFP fusion proteins with each of the RPA subunits and demonstrate that these Rfa-GFP chimeras are functional in yeast cells. The intracellular localization of the RPA proteins in live cells is similar in wild-type and msn5Δ deletion strains but becomes primarily cytoplasmic in cells lacking functional Kap95. Truncating the C-terminus of any of the RPA subunits results in mislocalization of the proteins to the cytoplasm and a loss of protein-protein interactions between the subunits. Our data indicate that Kap95 is likely the primary karyopherin responsible for RPA nuclear import in yeast and that the C-terminal regions of Rfa1, Rfa2, and Rfa3 are essential for efficient nucleocytoplasmic transport of each RPA subunit.

摘要

真核细胞中的核蛋白输入是由核孔蛋白介导的,这些核孔蛋白与底物蛋白上特定的核定位信号结合,并将其穿过核膜运送到细胞核内。复制蛋白 A(RPA)是一种由三个亚基(在酿酒酵母中分别称为 Rfa1、Rfa2 和 Rfa3)组成的核蛋白,它能与单链 DNA 结合,对 DNA 复制、重组和修复至关重要。RPA 在酵母中与两种不同的核孔蛋白 Kap95 和 Msn5/Kap142 相关联。然而,尚不清楚这些核孔蛋白中的哪一种负责 RPA 的核输入。我们已经生成了每个 RPA 亚基的 GFP 融合蛋白,并证明这些 Rfa-GFP 嵌合体在酵母细胞中是有功能的。在活细胞中,RPA 蛋白的细胞内定位在野生型和 msn5Δ 缺失菌株中相似,但在缺乏功能性 Kap95 的细胞中主要位于细胞质中。截断任何 RPA 亚基的 C 端都会导致这些蛋白错误定位到细胞质中,并导致亚基之间的蛋白-蛋白相互作用丧失。我们的数据表明,Kap95 可能是酵母中 RPA 核输入的主要核孔蛋白,并且 Rfa1、Rfa2 和 Rfa3 的 C 末端对于每个 RPA 亚基的高效核质转运是必不可少的。

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