首页> 美国卫生研究院文献>Genetics >The Fission Yeast Schizosaccharomyces pombe Has Two Importin-α Proteins Imp1p and Cut15p Which Have Common and Unique Functions in Nucleocytoplasmic Transport and Cell Cycle Progression
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The Fission Yeast Schizosaccharomyces pombe Has Two Importin-α Proteins Imp1p and Cut15p Which Have Common and Unique Functions in Nucleocytoplasmic Transport and Cell Cycle Progression

机译:裂变酵母粟酒裂殖酵母具有两个importin-α蛋白Imp1p和Cut15p它们在核质运输和细胞周期进程中具有共同而独特的功能。

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摘要

The nuclear import of classical nuclear localization signal-containing proteins depends on importin-α transport receptors. In budding yeast there is a single importin-α gene and in higher eukaryotes there are multiple importin-α-like genes, but in fission yeast there are two: the previously characterized cut15 and the more recently identified imp1. Like other importin-α family members, Imp1p supports nuclear protein import in vitro. In contrast to cut15, imp1 is not essential for viability, but imp1Δ mutant cells exhibit a telophase delay and mild temperature-sensitive lethality. Differences in the cellular functions that depend on Imp1p and Cut15p indicate that they each have unique physiological roles. They also have common roles because the imp1Δ and the cut15-85 temperature-sensitive mutations are synthetically lethal; overexpression of cut15 partially suppresses the temperature sensitivity, but not the mitotic delay in imp1Δ cells; and overexpression of imp1 partially suppresses the mitotic defect in cut15-85 cells but not the loss of viability. Both Imp1p and Cut15p are required for the efficient nuclear import of both an SV40 nuclear localization signal-containing reporter protein and the Pap1p component of the stress response MAP kinase pathway. Imp1p and Cut15p are essential for efficient nuclear protein import in S. pombe.
机译:经典的含核定位信号的蛋白质的核输入取决于importin-α转运受体。在发芽酵母中有一个单一的importin-α基因,在高等真核生物中有多个importin-α样基因,但在裂变酵母中有两个:先前鉴定的cut15和最近鉴定的imp1。与其他importin-α家族成员一样,Imp1p支持体外核蛋白的导入。与cut15相比,imp1对生存力不是必需的,但是imp1Δ突变细胞显示出末期延迟和温和的对温度敏感的杀伤力。依赖于Imp1p和Cut15p的细胞功能的差异表明它们各自具有独特的生理作用。它们还具有共同的作用,因为imp1Δ和cut15-85对温度敏感的突变是合成致死的。 cut15的过表达部分抑制了温度敏感性,但没有抑制imp1Δ细胞的有丝分裂延迟。 imp1的过度表达可部分抑制cut15-85细胞的有丝分裂缺陷,但不能抑制活力的丧失。 Imp1p和Cut15p都是有效导入含有SV40核定位信号的报告蛋白和应激反应MAP激酶途径的Pap1p组分所必需的。 Imp1p和Cut15p对粟酒裂殖酵母高效导入核蛋白至关重要。

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