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变形链球菌中一种新型G蛋白SGP的表达、纯化及特性分析

Expression, purification, and characterization of a novel G protein, SGP, from Streptococcus mutans.

作者信息

Wu J, Cho M I, Kuramitsu H K

机构信息

Department of Oral Biology, State University of New York at Buffalo 14214, USA.

出版信息

Infect Immun. 1995 Jul;63(7):2516-21. doi: 10.1128/iai.63.7.2516-2521.1995.

Abstract

The sgp gene of Streptococcus mutans was recently detected immediately downstream from the dgk gene within the same operon. In this study, the sgp gene was subcloned into the pMAL-c2 vector and SGP (S. mutans G protein) was overexpressed in Escherichia coli as a fusion protein with the maltose-binding protein at a level of 40% of total cellular protein. One-step amylose affinity chromatography purification of this fusion protein yielded a product of approximately 95% purity. SGP was purified from this fusion protein following cleavage with protease factor Xa and DEAE-Sephacel chromatography. In nucleotide binding assays, recombinant SGP showed specific binding for GTP and GDP, but not ATP, CTP, and UTP, and also catalyzed efficient hydrolysis of GTP to GDP. Kinetic studies revealed that the SGP Km value for GTP in this reaction was approximately 5.9 microM. Mg2+ also served as a cofactor of SGP in this reaction. In vivo subcellular localization by immunogold labelling demonstrated that SGP was associated with both membrane and cytoplasmic fractions. SGP not only had structural similarities with other G proteins but also proved to have high-level intrinsic GTPase activity. Therefore, SGP appears to be a new member of the G protein superfamily and may participate in transmembrane signaling in the responses of S. mutans cells to environmental stimuli.

摘要

变形链球菌的sgp基因最近在同一操纵子内的dgk基因下游被检测到。在本研究中,sgp基因被亚克隆到pMAL-c2载体中,并且变形链球菌G蛋白(SGP)在大肠杆菌中作为与麦芽糖结合蛋白的融合蛋白过表达,其水平达到总细胞蛋白的40%。通过一步直链淀粉亲和层析纯化该融合蛋白,得到纯度约为95%的产物。在用蛋白酶因子Xa切割并经DEAE-琼脂糖凝胶层析后,从该融合蛋白中纯化出SGP。在核苷酸结合试验中,重组SGP显示出对GTP和GDP有特异性结合,但对ATP、CTP和UTP无结合,并且还催化GTP高效水解为GDP。动力学研究表明,该反应中SGP对GTP的Km值约为5.9微摩尔。Mg2+在该反应中也作为SGP的辅因子。通过免疫金标记进行的体内亚细胞定位表明,SGP与膜和细胞质部分均有关联。SGP不仅与其他G蛋白有结构相似性,而且还被证明具有高水平的内在GTP酶活性。因此,SGP似乎是G蛋白超家族的一个新成员,并且可能参与变形链球菌细胞对环境刺激的反应中的跨膜信号传导。

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