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一种来自嗜盐古菌的bZIP蛋白:盐生盐杆菌cGvpE的结构特征与二聚体形成

A bZIP protein from halophilic archaea: structural features and dimer formation of cGvpE from Halobacterium salinarum.

作者信息

Plösser Petra, Pfeifer Felicitas

机构信息

Institut für Mikrobiologie und Genetik, TU Darmstadt, D-64287 Darmstadt, Germany.

出版信息

Mol Microbiol. 2002 Jul;45(2):511-20. doi: 10.1046/j.1365-2958.2002.03031.x.

Abstract

The cGvpE protein of Halobacterium salinarum PHH4 has been identified as transcriptional activator for the promoter of the c-gvpA gene encoding the major gas vesicle structural protein cGvpA. Molecular modelling of the carboxy-terminal region of cGvpE suggests that this protein resembles a basic leucine-zipper protein, and mutations in the putative DNA binding domain DNAB completely abolish the activator function in Haloferax volcanii transformants. Mutations in the key residues of the putative leucine-zipper region AH6 of cGvpE confirmed that the three residues V159, L166 and L173 were essential for the activator function of cGvpE at the c-gvpA promoter, whereas the cysteine residue C180 could be altered to a leucine or an aspartate residue without the loss of this function. Mutations in basic residues of helix AH4 demonstrated the importance of the lysine K104 for the activator function of cGvpE. A cGvpE protein containing a his-tag at the C-terminus was still able to activate the expression of c-gvpA in vivo. The cGvpE his-purified from Hf. volcanii formed a dimer in Blue-native polyacrylamide gels that could be resolved into monomers by SDS-polyacrylamide gel electrophoresis (SDS-PAGE). Dimers of cGvpE were already seen using SDS-PAGE, but not with cGvpE mutant proteins containing the alterations L166E or L173E/C180L in the leucine zipper. These results imply that the hydrophobic surface of helix AH6 is indeed required for the establishment of cGvpE dimers.

摘要

盐沼盐杆菌PHH4的cGvpE蛋白已被鉴定为编码主要气体囊泡结构蛋白cGvpA的c-gvpA基因启动子的转录激活因子。cGvpE羧基末端区域的分子建模表明,该蛋白类似于碱性亮氨酸拉链蛋白,推定的DNA结合结构域DNAB中的突变完全消除了沃氏嗜盐菌转化体中的激活功能。cGvpE推定的亮氨酸拉链区域AH6关键残基的突变证实,V159、L166和L173这三个残基对于cGvpE在c-gvpA启动子处的激活功能至关重要,而半胱氨酸残基C180可以改变为亮氨酸或天冬氨酸残基而不丧失该功能。螺旋AH4碱性残基的突变证明了赖氨酸K104对于cGvpE激活功能的重要性。在C末端含有组氨酸标签的cGvpE蛋白在体内仍能够激活c-gvpA的表达。从沃氏嗜盐菌中纯化的cGvpE组氨酸在蓝色非变性聚丙烯酰胺凝胶中形成二聚体,通过SDS-聚丙烯酰胺凝胶电泳(SDS-PAGE)可将其解析为单体。使用SDS-PAGE已经可以看到cGvpE的二聚体,但含有亮氨酸拉链中L166E或L173E/C180L改变的cGvpE突变蛋白则看不到。这些结果表明,螺旋AH6的疏水表面确实是cGvpE二聚体形成所必需的。

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