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大肠杆菌周质麦芽糖结合蛋白相互作用位点鉴定的研究进展。

Progress in the identification of interaction sites on the periplasmic maltose binding protein from E coli.

作者信息

Martineau P, Saurin W, Hofnung M, Spurlino J C, Quiocho F A

机构信息

Unité de Programmation Moléculaire et de Toxicologie Génétique, CNRS UA271, INSERM U163, Institut Pasteur, Paris, France.

出版信息

Biochimie. 1990 Jun-Jul;72(6-7):397-402. doi: 10.1016/0300-9084(90)90063-m.

Abstract

The periplasmic maltose binding protein (MBP) is required for the high affinity transport of maltose and maltodextrins and for chemotaxis towards these sugars. In these functions, MBP interacts with proteins of the cytoplasmic membrane: MalF and MalG for transport, Tar for chemotaxis. A large number of MBP mutations have been isolated by us and other laboratories. We grouped these mutations into classes depending on the interactions affected and we represented the corresponding residues on the 3-D model for MBP so as to further identify the sites of MBP interacting with the MalF-MalG complex and with the Tar protein. MBP (like the other binding proteins) is composed of 2 lobes enclosing a cleft where the substrate binds. The face of the protein opposite the cleft seems to interact neither with MalF-MalG nor with Tar. The other face, corresponding to the cleft, contains sites for interactions with MalF-MalG and Tar. These sites appear to cover both sides of the cleft and may overlap in part. The present definition of the interaction sites suggests further that MBP has different in vivo orientations when it interacts with MalF-MalG or with Tar. This work constitutes an additional step in combining the use of genetic and structural analysis to define the interaction sites on MBP. Because of the structural similarities between periplasmic binding proteins, the regions of interaction defined could be relevant for other members of this family.

摘要

周质麦芽糖结合蛋白(MBP)是麦芽糖和麦芽糊精高亲和力转运以及对这些糖类趋化作用所必需的。在这些功能中,MBP与细胞质膜蛋白相互作用:运输方面与MalF和MalG相互作用,趋化作用方面与Tar相互作用。我们和其他实验室已经分离出大量MBP突变体。我们根据受影响的相互作用将这些突变体分类,并在MBP的三维模型上展示相应的残基,以便进一步确定MBP与MalF - MalG复合物以及与Tar蛋白相互作用的位点。MBP(与其他结合蛋白一样)由两个叶包围一个底物结合的裂隙组成。与裂隙相对的蛋白面似乎既不与MalF - MalG相互作用,也不与Tar相互作用。与裂隙对应的另一面包含与MalF - MalG和Tar相互作用的位点。这些位点似乎覆盖裂隙的两侧,并且可能部分重叠。相互作用位点的当前定义进一步表明,MBP在与MalF - MalG或与Tar相互作用时在体内具有不同的取向。这项工作是结合使用遗传和结构分析来确定MBP上相互作用位点的又一步骤。由于周质结合蛋白之间的结构相似性,所确定的相互作用区域可能与该家族的其他成员相关。

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