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RanGAP1的SUMO-1修饰的分子特征及其在核膜关联中的作用。

Molecular characterization of the SUMO-1 modification of RanGAP1 and its role in nuclear envelope association.

作者信息

Mahajan R, Gerace L, Melchior F

机构信息

Department of Cell Biology, The Scripps Research Institute, La Jolla, California 92037, USA.

出版信息

J Cell Biol. 1998 Jan 26;140(2):259-70. doi: 10.1083/jcb.140.2.259.

Abstract

The mammalian guanosine triphosphate (GTP)ase-activating protein RanGAP1 is the first example of a protein covalently linked to the ubiquitin-related protein SUMO-1. Here we used peptide mapping, mass spectroscopy analysis, and mutagenesis to identify the nature of the link between RanGAP1 and SUMO-1. SUMO-1 is linked to RanGAP1 via glycine 97, indicating that the last 4 amino acids of this 101- amino acid protein are proteolytically removed before its attachment to RanGAP1. Recombinant SUMO-1 lacking the last four amino acids is efficiently used for modification of RanGAP1 in vitro and of multiple unknown proteins in vivo. In contrast to most ubiquitinated proteins, only a single lysine residue (K526) in RanGAP1 can serve as the acceptor site for modification by SUMO-1. Modification of RanGAP1 with SUMO-1 leads to association of RanGAP1 with the nuclear envelope (NE), where it was previously shown to be required for nuclear protein import. Sufficient information for modification and targeting resides in a 25-kD domain of RanGAP1. RanGAP1-SUMO-1 remains stably associated with the NE during many cycles of in vitro import. This indicates that removal of RanGAP1 from the NE is not a required element of nuclear protein import and suggests that the reversible modification of RanGAP1 may have a regulatory role.

摘要

哺乳动物鸟苷三磷酸(GTP)酶激活蛋白RanGAP1是与泛素相关蛋白SUMO-1共价连接的蛋白质的首个实例。在此,我们运用肽图分析、质谱分析和诱变技术来确定RanGAP1与SUMO-1之间连接的性质。SUMO-1通过甘氨酸97与RanGAP1相连,这表明该101个氨基酸的蛋白质的最后4个氨基酸在连接到RanGAP1之前被蛋白酶水解去除。缺少最后四个氨基酸的重组SUMO-1在体外可有效用于RanGAP1的修饰,在体内可有效用于多种未知蛋白质的修饰。与大多数泛素化蛋白质不同,RanGAP1中只有一个赖氨酸残基(K526)可作为SUMO-1修饰的受体位点。RanGAP1被SUMO-1修饰会导致RanGAP1与核膜(NE)结合,此前已表明RanGAP1在核蛋白导入过程中是必需的。修饰和靶向所需的足够信息存在于RanGAP1的一个25-kD结构域中。在许多体外导入循环中,RanGAP1-SUMO-1与核膜保持稳定结合。这表明从核膜上去除RanGAP1不是核蛋白导入的必需环节,并提示RanGAP1的可逆修饰可能具有调节作用。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/ce9e/2132567/540327cf6157/JCB14685.f4.jpg

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