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Isolated Mammalian and Schizosaccharomyces pombe Ran-binding Domains Rescue S. pombe sbp1 (RanBP1) Genomic Mutants

机译:分离的哺乳动物和粟酒裂殖酵母Ran结合结构域拯救S. pombe sbp1(RanBP1)基因组突变体。

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摘要

Mammalian Ran-binding protein-1 (RanBP1) and its fission yeast homologue, sbp1p, are cytosolic proteins that interact with the GTP-charged form of Ran GTPase through a conserved Ran-binding domain (RBD). In vitro, this interaction can accelerate the Ran GTPase-activating protein–mediated hydrolysis of GTP on Ran and the turnover of nuclear import and export complexes. To analyze RanBP1 function in vivo, we expressed exogenous RanBP1, sbp1p, and the RBD of each in mammalian cells, in wild-type fission yeast, and in yeast whose endogenous sbp1 gene was disrupted. Mammalian cells and wild-type yeast expressing moderate levels of each protein were viable and displayed normal nuclear protein import. sbp1 yeast were inviable but could be rescued by all four exogenous proteins. Two RBDs of the mammalian nucleoporin RanBP2 also rescued sbp1 yeast. In mammalian cells, wild-type yeast, and rescued mutant yeast, exogenous full-length RanBP1 and sbp1p localized predominantly to the cytosol, whereas exogenous RBDs localized predominantly to the cell nucleus. These results suggest that only the RBD of sbp1p is required for its function in fission yeast, and that this function may not require confinement of the RBD to the cytosol. The results also indicate that the polar amino-terminal portion of sbp1p mediates cytosolic localization of the protein in both yeast and mammalian cells.
机译:哺乳动物Ran结合蛋白1(RanBP1)及其裂变酵母同源物sbp1p是胞质蛋白,它们通过保守的Ran结合域(RBD)与GTP电荷形式的Ran GTPase相互作用。在体外,这种相互作用可以加速Ran GTPase活化蛋白介导的Ran上GTP的水解以及核进出口复合体的周转。为了分析RanBP1在体内的功能,我们在哺乳动物细胞,野生型裂变酵母和内源sbp1基因被破坏的酵母中表达了外源RanBP1,sbp1p和RBD。表达每种蛋白质中等水平的哺乳动物细胞和野生型酵母是可行的,并显示出正常的核蛋白输入。 sbp1 -酵母是不可感染的,但可以被所有四种外源蛋白拯救。哺乳动物核孔蛋白RanBP2的两个RBD也拯救了sbp1 -酵母。在哺乳动物细胞,野生型酵母和挽救的突变酵母中,外源全长RanBP1和sbp1p主要位于细胞质中,而外源RBD主要位于细胞核中。这些结果表明,仅sbp1p的RBD对其在裂变酵母中的功能是必需的,并且该功能可能不需要将RBD限制在细胞质中。结果还表明,sbp1p的极性氨基末端部分在酵母和哺乳动物细胞中介导了蛋白质的胞质定位。

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