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大肠杆菌素V分泌系统中必需基因cvaA编码的读码框内蛋白质的特性:CvaA*使CvaA稳定以增强分泌。

Characterization of in-frame proteins encoded by cvaA, an essential gene in the colicin V secretion system: CvaA* stabilizes CvaA to enhance secretion.

作者信息

Hwang J, Manuvakhova M, Tai P C

机构信息

Department of Biology, Georgia State University, Atlanta 30303, USA.

出版信息

J Bacteriol. 1997 Feb;179(3):689-96. doi: 10.1128/jb.179.3.689-696.1997.

Abstract

Colicin V (ColV), an antibacterial peptide toxin, uses a dedicated signal sequence-independent export system for its extracellular secretion in Escherichia coli. The products of at least three genes (a chromosomal tolC gene and two plasmid-born cvaA and cvaB genes) are involved in this process. To characterize the gene products, the cvaA gene was subcloned and expressed under the control of T7 RNA polymerase promoter. Two in-frame proteins, CvaA and CvaA*, were expressed and identified. DNA sequences predicted that both proteins have two potential translational initiation sites. N-terminal peptide sequencing showed that the translation of CvaA starts from a TTG, 11 amino acids upstream of the previously proposed ATG initiation site. CvaA* is translated from an upstream ATG. Expression of both CvaA and CvaA* was induced by the iron chelator 2,2'-dipyridyl, indicating that cvaA is negatively regulated at least partially by Fur. CvaA*-depleted cells were found to secrete less ColV, based on reduced activity in the supernatant, than did wild type, which was recovered by the addition of a plasmid producing CvaA*. Interestingly, CvaA*-depleted and wild-type cells had similar levels of intracellular ColV activity. Translational fusions showed that the syntheses of ColV and CvaA are not affected by CvaA* depletion. However, CvaA in CvaA*-depleted cells was less stable than that in wild-type cells, indicating that CvaA* may directly or indirectly affect the stability of CvaA. We conclude that CvaA* is not essential for ColV secretion but that it enhances the ColV secretion by stabilizing the CvaA protein.

摘要

大肠杆菌素V(ColV)是一种抗菌肽毒素,它在大肠杆菌中通过一种专门的不依赖信号序列的输出系统进行细胞外分泌。至少三个基因(一个染色体tolC基因和两个质粒携带的cvaA和cvaB基因)的产物参与了这一过程。为了表征这些基因产物,将cvaA基因亚克隆并在T7 RNA聚合酶启动子的控制下进行表达。表达并鉴定了两种读码框内的蛋白质,即CvaA和CvaA*。DNA序列预测这两种蛋白质都有两个潜在的翻译起始位点。N端肽测序表明,CvaA的翻译起始于一个TTG,在先前提出的ATG起始位点上游11个氨基酸处。CvaA则从上游的ATG开始翻译。CvaA和CvaA的表达都受到铁螯合剂2,2'-联吡啶的诱导,这表明cvaA至少部分受到Fur的负调控。基于上清液中活性降低,发现CvaA缺失的细胞分泌的ColV比野生型细胞少,而添加产生CvaA的质粒可恢复这一情况。有趣的是,CvaA缺失的细胞和野生型细胞的细胞内ColV活性水平相似。翻译融合表明,ColV和CvaA的合成不受CvaA缺失的影响。然而,CvaA缺失细胞中的CvaA比野生型细胞中的CvaA更不稳定,这表明CvaA可能直接或间接影响CvaA的稳定性。我们得出结论,CvaA*对于ColV的分泌不是必需的,但它通过稳定CvaA蛋白来增强ColV的分泌。

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