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一种新型人类横纹肌RING锌指蛋白SMRZ通过其RING结构域与SMT3b相互作用。

A novel human striated muscle RING zinc finger protein, SMRZ, interacts with SMT3b via its RING domain.

作者信息

Dai K S, Liew C C

机构信息

Institute of Medical Science and Department of Laboratory Medicine and Pathobiology, University of Toronto, Toronto, Ontario M5G 1L5, Canada.

出版信息

J Biol Chem. 2001 Jun 29;276(26):23992-9. doi: 10.1074/jbc.M011208200. Epub 2001 Mar 30.

Abstract

The RING domain is a conserved zinc finger motif, which serves as a protein-protein interaction interface. Searches of a human heart expressed sequence tag data base for genes encoding the RING domain identified a novel cDNA, named striated muscle RING zinc finger protein (SMRZ). The SMRZ cDNA is 1.9 kilobase pairs in length and encodes a polypeptide of 288 amino acid residues; analysis of the peptide sequence demonstrated an N-terminal RING domain. Fluorescence in situ hybridization localized SMRZ to chromosome 1p33-34. Northern blots demonstrated that SMRZ is expressed exclusively in striated muscle. In the cardiovascular system, SMRZ is more highly expressed in the fetal heart than in the adult heart (slightly higher expression in the ventricle than in the atrium), suggesting that SMRZ is developmentally regulated. SMRZ was found to interact with SMT3b, a ubiquitin-like protein, through the SMRZ-RING domain. This interaction was abolished by mutagenesis of conserved RING domain residues. Transient transfection of SMRZ into C2C12 myoblasts showed localization of SMRZ to the nucleus. These data suggest that SMRZ may play an important role in striated muscle cell embryonic development and perhaps in cell cycle regulation.

摘要

RING结构域是一种保守的锌指基序,作为蛋白质-蛋白质相互作用界面。在人类心脏表达序列标签数据库中搜索编码RING结构域的基因,鉴定出一种新的cDNA,命名为横纹肌RING锌指蛋白(SMRZ)。SMRZ cDNA长度为1.9千碱基对,编码一个由288个氨基酸残基组成的多肽;对肽序列的分析显示有一个N端RING结构域。荧光原位杂交将SMRZ定位于染色体1p33 - 34。Northern印迹表明SMRZ仅在横纹肌中表达。在心血管系统中,SMRZ在胎儿心脏中的表达高于成体心脏(在心室中的表达略高于心房),提示SMRZ受发育调控。发现SMRZ通过SMRZ-RING结构域与一种类泛素蛋白SMT3b相互作用。保守RING结构域残基的诱变消除了这种相互作用。将SMRZ瞬时转染到C2C12成肌细胞中显示SMRZ定位于细胞核。这些数据表明SMRZ可能在横纹肌细胞胚胎发育中以及可能在细胞周期调控中起重要作用。

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