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核输入因子p97上Ran-GTP和Ran-GDP/RanBP1的不同结合结构域。

Different binding domains for Ran-GTP and Ran-GDP/RanBP1 on nuclear import factor p97.

作者信息

Chi N C, Adam E J, Adam S A

机构信息

Department of Cell and Molecular Biology, Northwestern University Medical School, Chicago, Illinois 60611, USA.

出版信息

J Biol Chem. 1997 Mar 7;272(10):6818-22. doi: 10.1074/jbc.272.10.6818.

Abstract

Several proteins are required for the transport of nuclear proteins from the cytoplasm to the nucleus, including the nuclear location sequence receptor (NLS receptor), p97, the small nuclear GTPase Ran/TC4, and several nucleoporins. The interaction of Ran with p97 is thought to regulate the interaction of these transport components. Ran-GTP alone binds p97, but Ran-GDP binds p97 only in conjunction with RanBP1. Using site-directed mutagenesis and deletion analysis, we have identified two distinct but overlapping binding domains for Ran-GTP and Ran-GDP/RanBP1 on p97. A short acidic sequence in p97 is part of the Ran-GDP/RanBP1 binding domain, possibly functioning in a similar manner as the C-terminal acidic sequence in Ran. A conserved cysteine residue in p97, Cys-158, is required for binding Ran-GDP/RanBP1, but not for binding of Ran-GTP to p97. In a permeabilized cell protein import assay, a mutant p97 with alanine substituted for Cys-158 is unable to support import in the presence of NLS receptor and Ran. These results support a direct active role for Ran-GDP in the receptor complex and provide evidence that the activity of downstream effectors of small GTPases may be regulated by both GTP- and GDP-bound forms of the protein.

摘要

细胞核蛋白从细胞质转运到细胞核需要多种蛋白质,包括核定位序列受体(NLS受体)、p97、小核GTP酶Ran/TC4以及几种核孔蛋白。Ran与p97的相互作用被认为可调节这些转运成分之间的相互作用。单独的Ran-GTP可结合p97,但Ran-GDP仅在与RanBP1结合时才结合p97。通过定点诱变和缺失分析,我们在p97上鉴定出了Ran-GTP和Ran-GDP/RanBP1的两个不同但重叠的结合结构域。p97中的一段短酸性序列是Ran-GDP/RanBP1结合结构域的一部分,其功能可能与Ran中的C末端酸性序列类似。p97中一个保守的半胱氨酸残基Cys-158是结合Ran-GDP/RanBP1所必需的,但不是Ran-GTP与p97结合所必需的。在通透细胞蛋白导入试验中,用丙氨酸替代Cys-158的突变型p97在存在NLS受体和Ran的情况下无法支持蛋白导入。这些结果支持Ran-GDP在受体复合物中起直接的活性作用,并提供了证据表明小GTP酶的下游效应器的活性可能受该蛋白的GTP结合形式和GDP结合形式的调节。

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