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参与大肠杆菌K1中多聚唾液酸输出的ABC转运蛋白疏水成分KpsM的拓扑结构和突变分析

Topological and mutational analysis of KpsM, the hydrophobic component of the ABC-transporter involved in the export of polysialic acid in Escherichia coli K1.

作者信息

Pigeon R P, Silver R P

机构信息

Department of Microbiology and Immunology, University of Rochester Medical Center, New York 14642.

出版信息

Mol Microbiol. 1994 Dec;14(5):871-81. doi: 10.1111/j.1365-2958.1994.tb01323.x.

Abstract

The 17 kb kps gene cluster of Escherichia coli K1, which encodes the information required for synthesis, assembly and translocation of the polysialic acid capsule of E. coli K1, is divided into three functional regions. Region 3 contains two genes, kpsM and kpsT, essential for the transport of capsule polymer across the cytoplasmic membrane. The hydrophobicity profile of KpsM suggests that it is an integral membrane protein while KpsT contains a consensus ATP-binding site. KpsM and KpsT belong to the ATP-binding cassette (ABC) superfamily of membrane transporters. In this study, we investigate the topology of KpsM within the cytoplasmic membrane using beta-lactamase fusions and alkaline phosphatase sandwich fusions. Our analysis provides evidence for a model of KpsM having six membrane-spanning regions, with the N- and C-terminal domains facing the cytoplasm, and a short domain within the third periplasmic loop, which we refer to as the SV-SVI linker localizing in the membrane. Protease digestion studies are consistent with regions of KpsM exposed to the periplasmic space. In vivo cross-linking studies provide support for dimerization of KpsM within the cytoplasmic membrane. Linker-insertion and site-directed mutagenesis define the N-terminus, the first cytoplasmic loop, and the SV-SVI linker as regions that are important for the function of KpsM in K1 polymer transport.

摘要

大肠杆菌K1的17 kb kps基因簇编码了大肠杆菌K1多聚唾液酸荚膜合成、组装和转运所需的信息,该基因簇分为三个功能区域。区域3包含两个基因,kpsM和kpsT,它们对于荚膜聚合物跨细胞质膜的转运至关重要。KpsM的疏水性图谱表明它是一种整合膜蛋白,而KpsT含有一个共有ATP结合位点。KpsM和KpsT属于膜转运蛋白的ATP结合盒(ABC)超家族。在本研究中,我们使用β-内酰胺酶融合和碱性磷酸酶夹心融合技术研究了KpsM在细胞质膜内的拓扑结构。我们的分析为KpsM具有六个跨膜区域的模型提供了证据,其N端和C端结构域面向细胞质,并且在第三个周质环内有一个短结构域,我们将其称为定位于膜内的SV-SVI连接子。蛋白酶消化研究与KpsM暴露于周质空间的区域一致。体内交联研究为KpsM在细胞质膜内的二聚化提供了支持。连接子插入和定点诱变将N端、第一个细胞质环和SV-SVI连接子定义为对KpsM在K1聚合物转运中的功能很重要的区域。

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