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一种维持 外膜脂不对称性的周质磷脂酶。

A periplasmic phospholipase that maintains outer membrane lipid asymmetry in .

机构信息

Department of Molecular Biology, Princeton University, Princeton, NJ 08544.

Lewis-Sigler Institute for Integrative Genomics, Princeton University, Princeton, NJ 08544.

出版信息

Proc Natl Acad Sci U S A. 2023 Jul 25;120(30):e2302546120. doi: 10.1073/pnas.2302546120. Epub 2023 Jul 18.

Abstract

The outer membrane of Gram-negative bacteria is unique in both structure and function. The surface-exposed outer leaflet is composed of lipopolysaccharide, while the inner leaflet is composed of glycerophospholipids. This lipid asymmetry creates mechanical strength, lowers membrane permeability, and is necessary for virulence in many pathogens. Glycerophospholipids that mislocalize to the outer leaflet are removed by the Mla pathway, which consists of the outer membrane channel MlaA, the periplasmic lipid carrier MlaC, and the inner membrane transporter MlaBDEF. The opportunistic pathogen has two proteins of the MlaA family: PA2800 and PA3239. Here, we show that PA2800 is part of a canonical Mla pathway, while PA3239 functions with the putative lipase PA3238. While loss of either pathway individually has little to no effect on outer membrane integrity, loss of both pathways weakens the outer membrane permeability barrier and increases production of the secondary metabolite pyocyanin. We propose that mislocalized glycerophospholipids are removed from the outer leaflet by PA3239 (renamed MlaZ), transferred to PA3238 (renamed MlaY), and degraded. This pathway streamlines recycling of glycerophospholipid degradation products by removing glycerophospholipids from the outer leaflet prior to degradation.

摘要

革兰氏阴性细菌的外膜在结构和功能上都是独特的。暴露在表面的外叶由脂多糖组成,而内叶由甘油磷脂组成。这种脂质不对称性赋予了膜机械强度、降低了膜通透性,并对许多病原体的毒力是必需的。错误定位到外叶的甘油磷脂被 Mla 途径去除,该途径由外膜通道 MlaA、周质脂载体 MlaC 和内膜转运蛋白 MlaBDEF 组成。机会性病原体 有两种 MlaA 家族蛋白:PA2800 和 PA3239。在这里,我们表明 PA2800 是典型 Mla 途径的一部分,而 PA3239 与假定的脂酶 PA3238 一起发挥作用。虽然单独缺失任何一种途径对外膜完整性几乎没有影响,但缺失两种途径会削弱外膜通透性屏障并增加次生代谢产物绿脓菌素的产生。我们提出,错误定位的甘油磷脂被 PA3239(更名为 MlaZ)从外叶中去除,然后转移到 PA3238(更名为 MlaY)并降解。该途径通过在外叶降解之前将甘油磷脂从外叶中去除,简化了甘油磷脂降解产物的回收。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/3d90/10374164/b30cdcb8b306/pnas.2302546120fig01.jpg

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