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The β-barrel assembly machinery (BAM) is required for the assembly of a primitive S-layer protein in the ancient outer membrane of Thermus thermophilus

机译:嗜热栖热菌的古代外膜中原始S层蛋白的组装需要β桶组装机械(BAM)

摘要

The ancient bacterial lineage Thermus spp has a primitive form of outer membrane attached to the cell wall through SlpA, a protein that shows intermediate properties between S-layer proteins and outer membrane (OM) porins. In E. coli and related Proteobacteria, porins are secreted through the BAM (β-barrel assembly machinery) pathway, whose main component is BamA. A homologue to this protein is encoded in all the Thermus spp so far sequenced, so we wondered if this pathway could be responsible for SlpA secretion in this ancient bacterial model. To analyse this hypothesis, we attempted to get mutants on this BamA th of T. thermophilus HB27. Knockout and deletion mutants lacking the last 10 amino acids were not viable, whereas its depletion by means of a BamA antisense RNA lead defective attachment to the cell wall of its OM-like envelope. Such defects were related to defective folding of the SlpA protein that was more sensitive to proteases than in a wild-type strain. A similar phenotype was found in mutants lacking the terminal Phe of SlpA. Further protein-protein interaction assays confirmed the existence of specific binding between SlpA and BamA th. Taking together, these data suggest that SlpA is secreted through a BAM-like pathway in this ancestral bacterial lineage, supporting an ancient origin of this pathway before the evolution of the Proteobacteria. © 2012 Springer.
机译:古代细菌谱系Thermus spp具有通过SlpA连接到细胞壁的原始外膜形式,该蛋白显示出S层蛋白和外膜(OM)孔蛋白之间的中间特性。在大肠杆菌和相关的变形杆菌中,孔蛋白是通过BAM(β-桶装配机械)途径分泌的,其主要成分是BamA。迄今为止,所有Thermus spp均已编码该蛋白的同源物,因此我们想知道该途径是否可能是这种古老细菌模型中SlpA分泌的原因。为了分析该假设,我们试图在嗜热链球菌HB27的BamAth上获得突变体。缺少最后10个氨基酸的敲除和缺失突变体是不可行的,而通过BamAs反义RNA的耗尽导致其与OM样包膜的细胞壁附着不良。此类缺陷与SlpA蛋白的折叠缺陷有关,SlpA蛋白的折叠比野生型菌株对蛋白酶更敏感。在缺少SlpA末端Phe的突变体中发现了相似的表型。进一步的蛋白质-蛋白质相互作用测定法证实了SlpA和BamAth之间存在特异性结合。综上所述,这些数据表明,SlpA是通过BAM样途径在该祖先细菌谱系中分泌的,支持了该途径在变形杆菌进化之前的古老起源。 ©2012 Springer。

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