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大肠杆菌DipZ:一种跨膜蛋白二硫键还原酶的剖析,其中三对半胱氨酸残基(分别位于三个结构域中)对功能的贡献各不相同。

Escherichia coli DipZ: anatomy of a transmembrane protein disulphide reductase in which three pairs of cysteine residues, one in each of three domains, contribute differentially to function.

作者信息

Gordon E H, Page M D, Willis A C, Ferguson S J

机构信息

Department of Biochemistry, University of Oxford, South Parks Road, Oxford OX1 3QU, UK.

出版信息

Mol Microbiol. 2000 Mar;35(6):1360-74. doi: 10.1046/j.1365-2958.2000.01796.x.

Abstract

DipZ is a bacterial cytoplasmic membrane protein that transfers reducing power from the cytoplasm to the periplasm so as to facilitate the formation of correct disulphide bonds and c-type cytochromes in the latter compartment. Topological analysis using gene fusions between the Escherichia coli dipZ and either E. coli phoA or lacZ shows that DipZ has a highly hydrophobic central domain comprising eight transmembrane alpha-helices plus periplasmic globular N-terminal and C-terminal domains. The previously assigned translational start codon for the E. coli DipZ was shown to be incorrect and the protein to be larger than previously thought. The experimentally determined translational start position indicates that an additional alpha-helix at the N-terminus acts as a cleavable signal peptide so that the N-terminus of the mature protein is located in the periplasm. The newly assigned 5' end of the dipZ gene was shown to be preceded by a functional ribosome-binding site. The hydrophobic central domain and both of the periplasmic globular domains each have a pair of highly conserved cysteine residues, and it was shown by site directed mutagenesis that all six conserved cysteine residues contribute to DipZ function.

摘要

DipZ是一种细菌细胞质膜蛋白,它将还原力从细胞质转移到周质,以促进后者区域中正确二硫键和c型细胞色素的形成。利用大肠杆菌dipZ与大肠杆菌phoA或lacZ之间的基因融合进行的拓扑分析表明,DipZ具有一个高度疏水的中央结构域,该结构域由八个跨膜α螺旋以及周质球状N端和C端结构域组成。结果表明,先前指定的大肠杆菌DipZ的翻译起始密码子是错误的,该蛋白质比先前认为的要大。实验确定的翻译起始位置表明,N端的一个额外α螺旋充当可裂解信号肽,因此成熟蛋白质的N端位于周质中。dipZ基因新指定的5'端之前有一个功能性核糖体结合位点。疏水中央结构域和两个周质球状结构域各自都有一对高度保守的半胱氨酸残基,定点诱变表明所有六个保守半胱氨酸残基都对DipZ功能有贡献。

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