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重新审视生物膜相关蛋白(Bap)多结构域蛋白:不仅仅是将细菌黏附在一起。

Revisiting Bap Multidomain Protein: More Than Sticking Bacteria Together.

作者信息

Valle Jaione, Fang Xianyang, Lasa Iñigo

机构信息

Instituto de Agrobiotecnología, CSIC-Gobierno de Navarra, Mutilva, Spain.

Beijing Advanced Innovation Center for Structural Biology, School of Life Sciences, Tsinghua University, Beijing, China.

出版信息

Front Microbiol. 2020 Dec 23;11:613581. doi: 10.3389/fmicb.2020.613581. eCollection 2020.

Abstract

One of the major components of the staphylococcal biofilm is surface proteins that assemble as scaffold components of the biofilm matrix. Among the different surface proteins able to contribute to biofilm formation, this review is dedicated to the Biofilm Associated Protein (Bap). Bap is part of the accessory genome of but orthologs of Bap in other staphylococcal species belong to the core genome. When present, Bap promotes adhesion to abiotic surfaces and induces strong intercellular adhesion by self-assembling into amyloid like aggregates in response to the levels of calcium and the pH in the environment. During infection, Bap enhances the adhesion to epithelial cells where it binds directly to the host receptor Gp96 and inhibits the entry of the bacteria into the cells. To perform such diverse range of functions, Bap comprises several domains, and some of them include several motifs associated to distinct functions. Based on the knowledge accumulated with the Bap protein of , this review aims to summarize the current knowledge of the structure and properties of each domain of Bap and their contribution to Bap functionality.

摘要

葡萄球菌生物膜的主要成分之一是作为生物膜基质支架成分组装的表面蛋白。在能够促进生物膜形成的不同表面蛋白中,本综述聚焦于生物膜相关蛋白(Bap)。Bap是[具体物种]附属基因组的一部分,但其他葡萄球菌物种中的Bap直系同源物属于核心基因组。当存在时,Bap促进对非生物表面的粘附,并通过响应环境中的钙水平和pH值自组装成淀粉样聚集体来诱导强烈的细胞间粘附。在感染期间,Bap增强对上皮细胞的粘附,它直接与宿主受体Gp96结合并抑制细菌进入细胞。为了执行如此多样的功能,Bap包含几个结构域,其中一些结构域包括与不同功能相关的几个基序。基于对[具体物种]Bap蛋白积累的知识,本综述旨在总结目前关于Bap每个结构域的结构和特性及其对Bap功能贡献的知识。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/269d/7785521/49614f6ea97c/fmicb-11-613581-g001.jpg

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