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肽聚糖交联的改变抑制了由II型分泌系统中GspA突变引起的分泌素组装缺陷。

Alterations in Peptidoglycan Cross-Linking Suppress the Secretin Assembly Defect Caused by Mutation of GspA in the Type II Secretion System.

作者信息

Vanderlinde Elizabeth M, Strozen Timothy G, Hernández Sara B, Cava Felipe, Howard S Peter

机构信息

Department of Microbiology and Immunology, College of Medicine, University of Saskatchewan, Saskatoon, Saskatchewan, Canada.

Laboratory for Molecular Infection Medicine Sweden, Department of Molecular Biology, Umeå Center for Microbial Research, Umeå University, Umeå, Sweden.

出版信息

J Bacteriol. 2017 Mar 28;199(8). doi: 10.1128/JB.00617-16. Print 2017 Apr 15.

Abstract

In Gram-negative bacteria, the peptidoglycan (PG) cell wall is a significant structural barrier for outer membrane protein assembly. In , outer membrane multimerization of the type II secretion system (T2SS) secretin ExeD requires the function of the inner membrane assembly factor complex ExeAB. The putative mechanism of the complex involves the reorganization of PG and localization of ExeD, whereby ExeA functions by interacting with PG to form a site for secretin assembly and ExeB forms an interaction with ExeD. This mechanism led us to hypothesize that increasing the pore size of PG would circumvent the requirement for ExeA in the assembly of the ExeD secretin. Growth of in 270 mM Gly reduced PG cross-links by approximately 30% and led to the suppression of secretin assembly defects in strains and in those expressing ExeA mutants by enabling localization of the secretin in the outer membrane. We also established a heterologous ExeD assembly system in and showed that ExeAB and ExeC are the only proteins required for the assembly of the ExeD secretin in and that ExeAB-independent assembly of ExeD can occur upon overexpression of the d,d-carboxypeptidase PBP 5. These results support an assembly model in which, upon binding to PG, ExeA induces multimerization and pore formation in the sacculus, which enables ExeD monomers to interact with ExeB and assemble into a secretin that both is inserted in the outer membrane and crosses the PG layer to interact with the inner membrane platform of the T2SS. The PG layer imposes a strict structural impediment for the assembly of macromolecular structures that span the cell envelope and serve as virulence factors in Gram-negative species. This work revealed that by decreasing PG cross-linking by growth in Gly, the absolute requirement for the PG-binding activity of ExeA in the assembly of the ExeD secretin was alleviated in In a heterologous assembly model in , expression of the carboxypeptidase PBP 5 could relieve the requirement for ExeAB in the assembly of the ExeD secretin. These results provide some mechanistic details of the ExeAB assembly complex function, in which the PG-binding and oligomerization functions of ExeAB are used to create a pore in the PG that is required for secretin assembly.

摘要

在革兰氏阴性菌中,肽聚糖(PG)细胞壁是外膜蛋白组装的重要结构屏障。在[具体细菌名称]中,II型分泌系统(T2SS)分泌素ExeD的外膜多聚化需要内膜组装因子复合物ExeAB发挥作用。该复合物的推测机制涉及PG的重组和ExeD的定位,其中ExeA通过与PG相互作用形成分泌素组装位点来发挥功能,而ExeB则与ExeD形成相互作用。这一机制使我们推测,增大PG的孔径将规避ExeA在ExeD分泌素组装中的需求。[具体细菌名称]在270 mM甘油中生长会使PG交联减少约30%,并通过使分泌素在外膜中定位,导致[具体细菌名称]菌株以及表达ExeA突变体的菌株中分泌素组装缺陷得到抑制。我们还在[具体细菌名称]中建立了一个异源ExeD组装系统,并表明ExeAB和ExeC是[具体细菌名称]中ExeD分泌素组装所需的仅有的[具体细菌名称]蛋白,并且在d,d - 羧肽酶PBP 5过表达时,ExeD可以发生不依赖ExeAB的组装。这些结果支持了一种组装模型,即ExeA与PG结合后,会诱导囊泡中的多聚化和孔形成,这使得ExeD单体能够与ExeB相互作用,并组装成一种既插入外膜又穿过PG层与T2SS内膜平台相互作用的分泌素。PG层对跨越细胞包膜并作为革兰氏阴性菌毒力因子的大分子结构的组装构成了严格的结构障碍。这项工作表明,通过在甘油中生长减少PG交联,在[具体细菌名称]中ExeD分泌素组装过程中对ExeA的PG结合活性的绝对需求得到了缓解。在[具体细菌名称]的异源组装模型中,羧肽酶PBP 5的表达可以减轻ExeD分泌素组装过程中对ExeAB的需求。这些结果提供了ExeAB组装复合物功能的一些机制细节,其中ExeAB的PG结合和寡聚化功能用于在PG中创建一个分泌素组装所需的孔。

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