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首页> 外文期刊>Journal of Molecular Biology >NUCLEAR PROTEIN IMPORT IS DECREASED BY ENGINEERED MUTANTS OF NUCLEAR TRANSPORT FACTOR 2 (NTF2) THAT DO NOT BIND GDP-RAN
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NUCLEAR PROTEIN IMPORT IS DECREASED BY ENGINEERED MUTANTS OF NUCLEAR TRANSPORT FACTOR 2 (NTF2) THAT DO NOT BIND GDP-RAN

机译:核糖蛋白进口量由于不限制GDP-RAN的核糖运输因子2(NTF2)的工程化数量而减少

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Nuclear transport factor 2 (NTF2) is associated with the translocation stage of nuclear protein import and binds both to nuclear pore proteins (nucleoporins) containing phenylalanine-rich repeats and to the Ras family GTPase Ran. In tl-tis study we probed the role of the NTF2-Ran interaction in nuclear protein import using site-directed mutants of NTF2 that interfere with its interaction with GDP-Ran. The design of these mutants was based on the X-ray crystal structure of NTF2 and was concentrated on conserved residues in and around the molecule's hydrophobic cavity. The mutant NTF2 cDNAs were expressed in Escherichia coli. Purified mutant proteins retained the interaction with FxFG-repeat nucleoporins, but several mutants in the negatively charged residues that surround the NTF2 cavity or in residues in the cavity itself were unable to bind GDP-Ran in vitro. The crystal structure of the E42K mutant protein in showed significant structural changes only in this side-chain, indicating that it participated directly in the interaction with GDP-Ran. In permeabilised cell nuclear protein Import assays, only wild-type NTF2 and mutants that bound GDP-Ran were functional. Furthermore, when the NTF2 E42K and D92N/D94N NTF2 mutants that failed to bind GDP-Ran in vitro were substituted for the chromosomal yeast NTF2, the yeast cells became non-viable, whereas yeast substituted with human NTF2 remained viable. We conclude that interaction between NTF2 and GDP-Ran is important for efficient nuclear protein import. (C) 1997 Academic Press Limited. [References: 62]
机译:核转运因子2(NTF2)与核蛋白输入的易位阶段相关,并与含有富含苯丙氨酸的重复序列的核孔蛋白(核孔蛋白)和Ras家族GTPase Ran结合。在tl-tis研究中,我们使用NTF2的定点突变体干扰了其与GDP-Ran的相互作用,探讨了NTF2-Ran相互作用在核蛋白输入中的作用。这些突变体的设计基于NTF2的X射线晶体结构,并集中在分子疏水腔内和周围的保守残基上。突变的NTF2 cDNA在大肠杆菌中表达。纯化的突变蛋白保留了与FxFG重复的核孔蛋白的相互作用,但是在NTF2腔周围带负电荷的残基中或在腔本身中的残基中的几个突变体无法在体外结合GDP-Ran。 E42K突变蛋白的晶体结构仅在该侧链中显示出显着的结构变化,表明它直接参与了与GDP-Ran的相互作用。在透化的细胞核蛋白导入分析中,只有野生型NTF2和结合GDP-Ran的突变体才起作用。此外,当在体外无法结合GDP-Ran的NTF2 E42K和D92N / D94N NTF2突变体替换为染色体酵母NTF2时,酵母细胞变得无活性,而被人NTF2取代的酵母仍然具有活力。我们得出结论,NTF2和GDP-Ran之间的相互作用对于有效导入核蛋白很重要。 (C)1997 Academic Press Limited。 [参考:62]

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