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首页> 外文期刊>Biochimica et biophysica acta. Molecular cell research >Oxidative stress mislocalizes and retains transport factor importin-alpha and nucleoporins Nup153 and Nup88 in nuclei where they generate high molecular mass complexes
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Oxidative stress mislocalizes and retains transport factor importin-alpha and nucleoporins Nup153 and Nup88 in nuclei where they generate high molecular mass complexes

机译:氧化应激在细胞核中错位并保留转运因子importin-α和核孔蛋白Nup153和Nup88,它们在其中产生高分子复合物

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Nuclear trafficking of proteins requires the cooperation between soluble transport components and nucleoporins. As such, classical nuclear import depends on the dimeric carrier importin-alpha/beta 1, and CAS, a member of the importin-p family, which exports importin-a to the cytoplasm. Here we analyzed the effect of oxidative stress elicited by diethyl maleate (DEM) on classical nuclear transport. Under conditions that do not induce death in the majority of cells, DEM has little effect on the nucleocytoplasmic concentration gradient of Ran, but interferes with the nuclear accumulation of several reporter proteins. Moreover, DEM treatment alters the distribution of soluble transport factors and several nucleoporins in growing cells. We identified nuclear retention of importin-alpha, CAS as well as nucleoporins Nup153 and Nup88 as a mechanism that contributes to the nuclear concentration of these proteins. Both nucleoporins, but not CAS, associate with importin-a in the nuclei of growing cells and in vitro. Importin-alpha generates high molecular mass complexes in the nucleus that contain Nup153 and Nup88, whereas CAS was not detected. The formation of high molecular mass complexes containing importin-a, Nup153 and Nup88 is increased upon oxidant treatment, suggesting that complex formation contributes to the anchoring of importin-alpha in nuclei. Taken together, our studies link oxidative stress to the proper localization of soluble transport factors and nucleoporins and to changes in the interactions between these proteins. (c) 2007 Elsevier B.V. All rights reserved.
机译:蛋白质的核转运需要可溶性转运成分和核孔蛋白之间的协同作用。因此,经典的核输入依赖于二聚体载体importin-alpha / beta 1和CAS(importin-p家族的成员),CAS将importin-a出口到细胞质。在这里,我们分析了马来酸二乙酯(DEM)引发的氧化应激对经典核运输的影响。在不诱导大多数细胞死亡的条件下,DEM对Ran的胞质浓度梯度影响很小,但会干扰几种报道蛋白的核积累。此外,DEM处理会改变生长细胞中可溶性转运因子和几种核孔蛋白的分布。我们确定了importin-alpha,CAS以及核孔蛋白Nup153和Nup88的核保留是一种有助于这些蛋白质的核浓缩的机制。在生长细胞的细胞核中和在体外,两种核孔蛋白均与importin-a结合,而与CAS不相关。 Importin-alpha在包含Nup153和Nup88的核中生成高分子量复合物,而未检测到CAS。氧化剂处理后,包含importin-a,Nup153和Nup88的高分子复合物的形成增加,这表明复合物的形成有助于importin-α在细胞核中的锚定。综上所述,我们的研究将氧化应激与可溶性转运因子和核孔蛋白的正确定位以及这些蛋白质之间相互作用的变化联系起来。 (c)2007 Elsevier B.V.保留所有权利。

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