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Kap121p介导的核输入是酵母交配和细胞分化所必需的。

Kap121p-mediated nuclear import is required for mating and cellular differentiation in yeast.

作者信息

Leslie Deena M, Grill Brock, Rout Michael P, Wozniak Richard W, Aitchison John D

机构信息

Institute for Systems Biology, Seattle, Washington 98105, USA.

出版信息

Mol Cell Biol. 2002 Apr;22(8):2544-55. doi: 10.1128/MCB.22.8.2544-2555.2002.

Abstract

To further our understanding of how the nucleocytoplasmic transport machinery interfaces with its cargoes and how this affects cellular physiology, we investigated the molecular mechanisms of phenotypes associated with mutations in karyopherin Kap121p. Two previously unreported phenotypes of kap121 cells were observed: defects in mating and in the transition from the normal yeast form to the pseudohyphal, invasive form. In parallel, we searched for Kap121p cargoes by using Kap121p as a probe in overlay assays of yeast nuclear proteins. One of the major interacting proteins identified by this procedure was Ste12p, a transcription factor central to both the mating response and the pseudohyphal transition. We therefore investigated whether defects in these differentiation processes were due to an inability to import Ste12p. Both immunopurification and in vitro binding studies demonstrated that Ste12p interacted specifically with Kap121p in a Ran-GTP-sensitive manner and that Ste12p was mislocalized to the cytoplasm by inactivation of Kap121p in a temperature-sensitive mutant. The Kap121p-specific nuclear localization signal (NLS) of Ste12p was determined to reside within a C-terminal region of Ste12p. Furthermore, by overexpression of STE12 or expression of a STE12-cNLS fusion in kap121 cells, the invasive-growth defect and the mating defect were both suppressed. Together these data demonstrate that Ste12p is imported into nuclei by Kap121p and that mating and differentiation defects associated with kap121 mutants are primarily attributable to the mislocalization of Ste12p.

摘要

为了进一步了解核质转运机制如何与其货物相互作用以及这如何影响细胞生理学,我们研究了与核转运蛋白Kap121p突变相关的表型的分子机制。观察到kap121细胞有两种先前未报道的表型:交配缺陷以及从正常酵母形态向假菌丝、侵袭性形态转变的缺陷。同时,我们通过在酵母核蛋白的覆盖分析中使用Kap121p作为探针来寻找Kap121p的货物。通过该方法鉴定出的主要相互作用蛋白之一是Ste12p,它是交配反应和假菌丝转变的核心转录因子。因此,我们研究了这些分化过程中的缺陷是否是由于无法导入Ste12p所致。免疫纯化和体外结合研究均表明,Ste12p以对Ran-GTP敏感的方式与Kap121p特异性相互作用,并且在温度敏感突变体中,由于Kap121p失活,Ste12p错误定位于细胞质中。确定Ste12p的Kap121p特异性核定位信号(NLS)位于Ste12p的C末端区域内。此外,通过在kap121细胞中过表达STE12或表达STE12-cNLS融合蛋白,侵袭性生长缺陷和交配缺陷均得到抑制。这些数据共同表明,Ste12p由Kap121p导入细胞核,并且与kap121突变体相关的交配和分化缺陷主要归因于Ste12p的错误定位。

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本文引用的文献

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