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耐辐射球菌应激反应蛋白DR1199的结构:DJ-1超家族成员

Structure of the stress response protein DR1199 from Deinococcus radiodurans: a member of the DJ-1 superfamily.

作者信息

Fioravanti Emanuela, Durá M Asunción, Lascoux David, Micossi Elena, Franzetti Bruno, McSweeney Sean

机构信息

European Synchrotron Radiation Facility, BP 220, 38043 Grenoble Cedex 9, France.

出版信息

Biochemistry. 2008 Nov 4;47(44):11581-9. doi: 10.1021/bi800882v. Epub 2008 Oct 14.

DOI:10.1021/bi800882v
PMID:18850720
Abstract

The expression level of protein DR1199 is observed to increase considerably in the radio-resistant bacterium Deinococcus radiodurans following irradiation. This protein belongs to the DJ-1 superfamily, which includes proteins with diverse functions, such as the archaeal proteases PhpI and PfpI, the bacterial chaperone Hsp31 and hyperosmotic stress protein YhbO, and the human Parkinson's disease-related protein DJ-1. All members of the superfamily are oligomeric, and the oligomerization interface varies from protein to protein. Although for many of these proteins, their function remains obscure, most of them are involved in cellular protection against environmental stresses. We have determined the structure of DR1199 to a resolution of 2.15 A, and we have tested its function and studied its role in the response to irradiation and more generally to oxidative stress in D. radiodurans. The protein is a dimer displaying an oligomerization interface similar to that observed for the YhbO and PhpI proteins. The cysteine in the catalytic triad (Cys 115) is oxidized in our structure, similar to modifications seen in the corresponding cysteine of the DJ-1 protein. The oxidation occurs spontaneously in DR1199 crystals. In solution, no proteolytic or chaperone activity was detected. On the basis of our results, we suggest that DR1199 might work as a general stress protein involved in the detoxification of the cell from oxygen reactive species, rather than as a peptidase in D. radiodurans.

摘要

据观察,在耐辐射细菌耐辐射球菌受到辐照后,蛋白质DR1199的表达水平显著增加。该蛋白质属于DJ-1超家族,该家族包括具有多种功能的蛋白质,如古细菌蛋白酶PhpI和PfpI、细菌伴侣蛋白Hsp31和高渗应激蛋白YhbO,以及与人类帕金森病相关的蛋白质DJ-1。该超家族的所有成员都是寡聚体,且寡聚化界面因蛋白质而异。尽管这些蛋白质中的许多功能仍不明确,但它们中的大多数都参与细胞对环境压力的保护。我们已将DR1199的结构解析到2.15埃的分辨率,并测试了其功能,研究了其在耐辐射球菌对辐照以及更普遍地对氧化应激的反应中的作用。该蛋白质是一种二聚体,其寡聚化界面与YhbO和PhpI蛋白质的相似。在我们解析的结构中,催化三联体中的半胱氨酸(Cys 115)被氧化,类似于DJ-1蛋白质相应半胱氨酸中观察到的修饰。这种氧化在DR1199晶体中自发发生。在溶液中,未检测到蛋白水解或伴侣活性。基于我们的结果,我们认为DR1199可能作为一种通用应激蛋白参与细胞对氧活性物质的解毒,而不是作为耐辐射球菌中的肽酶。

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