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β-桶结构域中的取代可克服大肠杆菌 ΔbamB ΔbamE 缺失株的条件致死表型。

Substitutions in the BamA β-barrel domain overcome the conditional lethal phenotype of a ΔbamB ΔbamE strain of Escherichia coli.

机构信息

School of Life Sciences, Arizona State University, Tempe, Arizona, USA.

出版信息

J Bacteriol. 2012 Jan;194(2):317-24. doi: 10.1128/JB.06192-11. Epub 2011 Oct 28.

Abstract

BamA interacts with the BamBCDE lipoproteins, and together they constitute the essential β-barrel assembly machine (BAM) of Escherichia coli. The simultaneous absence of BamB and BamE confers a conditional lethal phenotype and a severe β-barrel outer membrane protein (OMP) biogenesis defect. Without BamB and BamE, wild-type BamA levels are significantly reduced, and the folding of the BamA β-barrel, as assessed by the heat-modifiability assay, is drastically compromised. Single-amino-acid substitutions in the β-barrel domain of BamA improve both bacterial growth and OMP biogenesis in a bamB bamE mutant and restore BamA levels close to the BamB(+) BamE(+) level. The substitutions alter BamA β-barrel folding, and folding in the mutants becomes independent of BamB and BamE. Remarkably, BamA β-barrel alterations also improve OMP biogenesis in cells lacking the major periplasmic chaperone, SurA, which, together with BamB, is thought to facilitate the transfer of partially folded OMPs to the soluble POTRA (polypeptide-transport-associated) domain of BamA. Unlike the bamB bamE mutant background, the absence of BamB or SurA does not affect BamA β-barrel folding. Thus, substitutions in the outer membrane-embedded BamA β-barrel domain overcome OMP biogenesis defects that occur at the POTRA domain of BamA in the periplasm. Based on the structure of FhaC, the altered BamA residues are predicted to lie on a highly conserved loop that folds inside the β-barrel and in regions pointing outside the β-barrel, suggesting that they influence BamA function by both direct and indirect mechanisms.

摘要

BamA 与 BamBCDE 脂蛋白相互作用,它们共同构成了大肠杆菌必需的β-桶组装机器 (BAM)。BamB 和 BamE 的同时缺失赋予了条件致死表型和严重的β-桶外膜蛋白 (OMP) 生物发生缺陷。没有 BamB 和 BamE,野生型 BamA 水平显著降低,并且 BamA β-桶的折叠,如通过热可变性测定评估,严重受损。 BamA β-桶结构域中的单个氨基酸取代可改善 bamB bamE 突变体中的细菌生长和 OMP 生物发生,并将 BamA 水平恢复到接近 BamB(+) BamE(+)水平。这些取代改变了 BamA β-桶的折叠,并且突变体中的折叠不再依赖 BamB 和 BamE。值得注意的是,BamA β-桶的改变也改善了缺乏主要周质伴侣 SurA 的细胞中的 OMP 生物发生,SurA 与 BamB 一起被认为有助于将部分折叠的 OMP 转移到 BamA 的可溶性 POTRA(多肽转运相关)结构域。与 bamB bamE 突变体背景不同,BamB 或 SurA 的缺失不会影响 BamA β-桶的折叠。因此,在外膜嵌入的 BamA β-桶结构域中的取代克服了 BamA 在周质中的 POTRA 结构域中发生的 OMP 生物发生缺陷。基于 FhaC 的结构,预测改变的 BamA 残基位于高度保守的环上,该环在β-桶内折叠,并在指向β-桶外部的区域折叠,表明它们通过直接和间接机制影响 BamA 功能。

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