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在导入大肠杆菌的过程中,大肠杆菌素A转运结构域的不同区域参与了与TolA和TolB蛋白的相互作用。

Distinct regions of the colicin A translocation domain are involved in the interaction with TolA and TolB proteins upon import into Escherichia coli.

作者信息

Bouveret E, Rigal A, Lazdunski C, Bénédetti H

机构信息

Laboratoire d'Ingénierie des Systèmes Macromoléculaires, Institut de Biologie Structurale et Microbiologie, CNRS, Marseille, France.

出版信息

Mol Microbiol. 1998 Jan;27(1):143-57. doi: 10.1046/j.1365-2958.1998.00667.x.

Abstract

Group A colicins need proteins of the Escherichia coli envelope Tol complex (TolA, TolB, TolQ and TolR) to reach their cellular target. The N-terminal domain of colicins is involved in the import process. The N-terminal domains of colicins A and E1 have been shown to interact with TolA, and the N-terminal domain of colicin E3 has been shown to interact with TolB. We found that a pentapeptide conserved in the N-terminal domain of all group A colicins, the 'TolA box', was important for colicin A import but was not involved in the colicin A-TolA interaction. It was, however, involved in the colicin A-TolB interaction. The interactions of colicin A N-terminal domain deletion mutants with TolA and TolB were investigated. Random mutagenesis was performed on a construct allowing the colicin A N-terminal domain to be exported in the bacteria periplasm. This enabled us to select mutant protein domains unable to compete with the wild-type domain of the entire colicin A for import into the cells. Our results demonstrate that different regions of the colicin A N-terminal domain interact with TolA and TolB. The colicin A N-terminal domain was also shown to form a trimeric complex with TolA and TolB.

摘要

A组大肠杆菌素需要大肠杆菌包膜Tol复合体(TolA、TolB、TolQ和TolR)的蛋白质才能到达其细胞靶点。大肠杆菌素的N端结构域参与了导入过程。已证明大肠杆菌素A和E1的N端结构域与TolA相互作用,并且已证明大肠杆菌素E3的N端结构域与TolB相互作用。我们发现,在所有A组大肠杆菌素的N端结构域中保守的一个五肽,即“TolA框”,对大肠杆菌素A的导入很重要,但不参与大肠杆菌素A与TolA的相互作用。然而,它参与了大肠杆菌素A与TolB的相互作用。研究了大肠杆菌素A N端结构域缺失突变体与TolA和TolB的相互作用。对一个能使大肠杆菌素A N端结构域在细菌周质中输出的构建体进行了随机诱变。这使我们能够选择不能与整个大肠杆菌素A的野生型结构域竞争导入细胞的突变蛋白结构域。我们的结果表明,大肠杆菌素A N端结构域的不同区域与TolA和TolB相互作用。还证明了大肠杆菌素A N端结构域与TolA和TolB形成三聚体复合物。

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