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菌毛 usher FimD 通过 SurA-BamB 途径在大肠杆菌外膜中进行组装。

The fimbrial usher FimD follows the SurA-BamB pathway for its assembly in the outer membrane of Escherichia coli.

机构信息

Department of Microbial Biotechnology, Centro Nacional de Biotecnología, CNB-CSIC, Campus de Cantoblanco UAM, Darwin 3, Madrid 28049, Spain.

出版信息

J Bacteriol. 2011 Oct;193(19):5222-30. doi: 10.1128/JB.05585-11. Epub 2011 Jul 22.

Abstract

Fimbrial ushers are the largest β-barrel outer membrane proteins (OMPs) known to date, which function in the polymerization of fimbriae and their translocation to the bacterial surface. Folding and assembly of these complex OMPs are not characterized. Here, we investigate the role of periplasmic chaperones (SurA, Skp, DegP, and FkpA) and individual components of the β-barrel assembly machinery (BAM) complex (BamA, BamB, BamC, and BamE) in the folding of the Escherichia coli FimD usher. The FimD level is dramatically reduced (∼30-fold) in a surA null mutant, but a strong cell envelope stress is constitutively activated with upregulation of DegP (∼10-fold). To demonstrate a direct role of SurA, FimD folding was analyzed in a conditional surA mutant in which SurA expression was controlled. In this strain, FimD is depleted from bacteria in parallel to SurA without significant upregulation of DegP. Interestingly, the dependency on SurA is higher for FimD than for other OMPs. We also demonstrate that a functional BAM complex is needed for folding of FimD. In addition, FimD levels were strongly reduced (∼5-fold) in a mutant lacking the accessory lipoprotein BamB. The critical role of BamB for FimD folding was confirmed by complementation and BamB depletion experiments. Similar to SurA dependency, FimD showed a stronger dependency on BamB than OMPs. On the other hand, folding of FimD was only marginally affected in bamC and bamE mutants. Collectively, our results indicate that FimD usher follows the SurA-BamB pathway for its assembly. The preferential use of this pathway for the folding of OMPs with large β-barrels is discussed.

摘要

菌毛小亚基是迄今为止已知的最大的β-桶状外膜蛋白(OMP),其功能在于菌毛的聚合及其向细菌表面的转运。这些复杂的 OMP 的折叠和组装尚未得到表征。在这里,我们研究了周质伴侣(SurA、Skp、DegP 和 FkpA)以及β-桶组装机制(BAM)复合物(BamA、BamB、BamC 和 BamE)的各个组件在大肠杆菌 FimD 小亚基折叠中的作用。在 surA 缺失突变体中,FimD 的水平显著降低(约 30 倍),但 DegP(约 10 倍)的组成性激活会导致强烈的细胞包膜应激。为了证明 SurA 的直接作用,我们在一个条件性 surA 突变体中分析了 FimD 的折叠,在该突变体中,SurA 的表达受到控制。在该菌株中,FimD 的耗尽与 SurA 平行,而 DegP 的上调不明显。有趣的是,FimD 对 SurA 的依赖性高于其他 OMP。我们还证明了功能性 BAM 复合物是 FimD 折叠所必需的。此外,在缺乏辅助脂蛋白 BamB 的突变体中,FimD 的水平也显著降低(约 5 倍)。通过互补和 BamB 耗尽实验证实了 BamB 对 FimD 折叠的关键作用。与 SurA 依赖性相似,FimD 对 BamB 的依赖性强于 OMP。另一方面,在 bamC 和 bamE 突变体中,FimD 的折叠仅受到轻微影响。总的来说,我们的结果表明 FimD 小亚基遵循 SurA-BamB 途径进行组装。讨论了这种途径优先用于折叠具有大β-桶的 OMP 的原因。

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