Department of Biochemistry, University of Regina, Regina, Saskatchewan, Canada.
Hospital for Sick Children, Toronto, Ontario, Canada.
Nat Biotechnol. 2018 Jan;36(1):103-112. doi: 10.1038/nbt.4024. Epub 2017 Nov 27.
Bacterial cell envelope protein (CEP) complexes mediate a range of processes, including membrane assembly, antibiotic resistance and metabolic coordination. However, only limited characterization of relevant macromolecules has been reported to date. Here we present a proteomic survey of 1,347 CEPs encompassing 90% inner- and outer-membrane and periplasmic proteins of Escherichia coli. After extraction with non-denaturing detergents, we affinity-purified 785 endogenously tagged CEPs and identified stably associated polypeptides by precision mass spectrometry. The resulting high-quality physical interaction network, comprising 77% of targeted CEPs, revealed many previously uncharacterized heteromeric complexes. We found that the secretion of autotransporters requires translocation and the assembly module TamB to nucleate proper folding from periplasm to cell surface through a cooperative mechanism involving the β-barrel assembly machinery. We also establish that an ABC transporter of unknown function, YadH, together with the Mla system preserves outer membrane lipid asymmetry. This E. coli CEP 'interactome' provides insights into the functional landscape governing CE systems essential to bacterial growth, metabolism and drug resistance.
细菌细胞包膜蛋白 (CEP) 复合物介导多种过程,包括膜组装、抗生素耐药性和代谢协调。然而,迄今为止,仅对相关大分子进行了有限的表征。在这里,我们对包含大肠杆菌 90%内膜、外膜和周质蛋白的 1,347 种 CEP 进行了蛋白质组学调查。在使用非变性去污剂提取后,我们通过亲和纯化了 785 种内源性标记的 CEP,并通过精确质谱鉴定了稳定相关的多肽。由此产生的高质量物理相互作用网络,包含 77%的靶向 CEP,揭示了许多以前未表征的异源复合物。我们发现,自转运蛋白的分泌需要易位和组装模块 TamB 从周质到细胞表面通过涉及 β-桶组装机制的协同机制来正确折叠。我们还确定了一个功能未知的 ABC 转运蛋白 YadH,与 Mla 系统一起维持外膜脂质不对称性。这个大肠杆菌 CEP“相互作用组”提供了对控制细菌生长、代谢和耐药性的 CEP 系统功能景观的深入了解。