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A Supercomplex Spanning the Inner and Outer Membranes Mediates the Biogenesis of β-Barrel Outer Membrane Proteins in Bacteria

机译:跨越内外膜的超复合物介导细菌中的β-桶外膜蛋白的生物发生。

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摘要

β-barrel outer membrane proteins (OMPs) are ubiquitously present in Gram-negative bacteria, mitochondria and chloroplasts, and function in a variety of biological processes. The mechanism by which the hydrophobic nascent β-barrel OMPs are transported through the hydrophilic periplasmic space in bacterial cells remains elusive. Here, mainly via unnatural amino acid-mediated in vivo photo-crosslinking studies, we revealed that the primary periplasmic chaperone SurA interacts with nascent β-barrel OMPs largely via its N-domain but with β-barrel assembly machine protein BamA mainly via its satellite P2 domain, and that the nascent β-barrel OMPs interact with SurA via their N- and C-terminal regions. Additionally, via dual in vivo photo-crosslinking, we demonstrated the formation of a ternary complex involving β-barrel OMP, SurA, and BamA in cells. More importantly, we found that a supercomplex spanning the inner and outer membranes and involving the BamA, BamB, SurA, PpiD, SecY, SecE, and SecA proteins appears to exist in living cells, as revealed by a combined analyses of sucrose-gradient ultra-centrifugation, Blue native PAGE and mass spectrometry. We propose that this supercomplex integrates the translocation, transportation, and membrane insertion events for β-barrel OMP biogenesis.
机译:β-桶外膜蛋白(OMPs)普遍存在于革兰氏阴性细菌,线粒体和叶绿体中,并在多种生物学过程中发挥作用。疏水性新生β-桶OMPs通过细菌细胞中亲水性周质空间转运的机制仍然难以捉摸。在这里,我们主要通过非天然氨基酸介导的体内光交联研究,揭示了主要的周质伴侣SurA主要通过其N结构域与新生的β-桶OMPs相互作用,但主要通过其卫星与β-桶装配机器蛋白BamA相互作用。 P2域,以及新生的β桶OMP通过其N和C端区域与SurA相互作用。此外,通过双重体内光交联,我们证明了细胞中涉及β-桶OMP,SurA和BamA的三元复合物的形成。更重要的是,我们发现,覆盖蔗糖内膜和外膜并涉及BamA,BamB,SurA,PpiD,SecY,SecE和SecA蛋白的超复合物似乎存在于活细胞中,这是通过对蔗糖梯度超分子的综合分析发现的。离心,Blue native PAGE和质谱。我们提出,这种超复合物整合了β-桶OMP生物发生的易位,运输和膜插入事件。

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