4.4 Article

The Fimbrial Usher FimD Follows the SurA-BamB Pathway for Its Assembly in the Outer Membrane of Escherichia coli

期刊

JOURNAL OF BACTERIOLOGY
卷 193, 期 19, 页码 5222-5230

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AMER SOC MICROBIOLOGY
DOI: 10.1128/JB.05585-11

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资金

  1. Spanish Ministry of Science and Innovation [BIO2008-05201]
  2. Autonomous Community of Madrid [S-BIO-236-2006]
  3. European Union [FP6-LSHB-CT-2005-512061 NoE]
  4. Apoyo a la Investigacion of the Autonomous Community of Madrid

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Fimbrial ushers are the largest beta-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 beta-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 (similar to 30-fold) in a surA null mutant, but a strong cell envelope stress is constitutively activated with upregulation of DegP (similar to 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 (similar to 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 similar to-barrels is discussed.

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