Chong Zhi-Soon, Woo Wei-Fen, Chng Shu-Sin
Department of Chemistry, National University of Singapore, Singapore, 117543.
Singapore Center on Environmental Life Sciences Engineering (SCELSE), National University of Singapore, Singapore, 117456.
Mol Microbiol. 2015 Dec;98(6):1133-46. doi: 10.1111/mmi.13202. Epub 2015 Sep 25.
Gram-negative bacteria can survive in harsh environments in part because the asymmetric outer membrane (OM) hinders the entry of toxic compounds. Lipid asymmetry is established by having phospholipids (PLs) confined to the inner leaflet of the membrane and lipopolysaccharides (LPS) to the outer leaflet. Perturbation of OM lipid asymmetry, characterized by PL accumulation in the outer leaflet, disrupts proper LPS packing and increases membrane permeability. The multi-component Mla system prevents PL accumulation in the outer leaflet of the OM via an unknown mechanism. Here, we demonstrate that in Escherichia coli, the Mla system maintains OM lipid asymmetry with the help of osmoporin OmpC. We show that the OM lipoprotein MlaA interacts specifically with OmpC and OmpF. This interaction is sufficient to localize MlaA lacking its lipid anchor to the OM. Removing OmpC, but not OmpF, causes accumulation of PLs in the outer leaflet of the OM in stationary phase, as was previously observed for MlaA. We establish that OmpC is an additional component of the Mla system; the OmpC-MlaA complex may function to remove PLs directly from the outer leaflet to maintain OM lipid asymmetry. Our work reveals a novel function for the general diffusion channel OmpC in lipid transport.
革兰氏阴性菌能够在恶劣环境中存活,部分原因是其不对称的外膜(OM)阻碍了有毒化合物的进入。脂质不对称性是通过将磷脂(PLs)限制在膜的内小叶以及脂多糖(LPS)限制在外小叶来建立的。以外小叶中PL积累为特征的OM脂质不对称性的扰动会破坏LPS的正常堆积并增加膜通透性。多组分Mla系统通过未知机制防止PL在外小叶中积累。在此,我们证明在大肠杆菌中,Mla系统在孔蛋白OmpC的帮助下维持OM脂质不对称性。我们表明,OM脂蛋白MlaA与OmpC和OmpF特异性相互作用。这种相互作用足以将缺乏脂质锚定的MlaA定位到OM。去除OmpC而非OmpF会导致在稳定期OM外小叶中PL积累,这与之前观察到的MlaA情况相同。我们确定OmpC是Mla系统的一个额外组分;OmpC-MlaA复合物可能直接从外小叶去除PL以维持OM脂质不对称性。我们的工作揭示了一般扩散通道OmpC在脂质转运中的新功能。