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脂质结合减弱了外膜蛋白 OmpF 的通道关闭。

Lipid binding attenuates channel closure of the outer membrane protein OmpF.

机构信息

Department of Chemistry, University of Oxford, Oxford OX1 5QY, United Kingdom.

OMass Technologies, Begbroke Science Park, Kidlington OX5 1PF, United Kingdom.

出版信息

Proc Natl Acad Sci U S A. 2018 Jun 26;115(26):6691-6696. doi: 10.1073/pnas.1721152115. Epub 2018 Jun 11.

Abstract

Strong interactions between lipids and proteins occur primarily through association of charged headgroups and amino acid side chains, rendering the protonation status of both partners important. Here we use native mass spectrometry to explore lipid binding as a function of charge of the outer membrane porin F (OmpF). We find that binding of anionic phosphatidylglycerol (POPG) or zwitterionic phosphatidylcholine (POPC) to OmpF is sensitive to electrospray polarity while the effects of charge are less pronounced for other proteins in outer or mitochondrial membranes: the ferripyoverdine receptor (FpvA) or the voltage-dependent anion channel (VDAC). Only marginal charge-induced differences were observed for inner membrane proteins: the ammonia channel (AmtB) or the mechanosensitive channel. To understand these different sensitivities, we performed an extensive bioinformatics analysis of membrane protein structures and found that OmpF, and to a lesser extent FpvA and VDAC, have atypically high local densities of basic and acidic residues in their lipid headgroup-binding regions. Coarse-grained molecular dynamics simulations, in mixed lipid bilayers, further implicate changes in charge by demonstrating preferential binding of anionic POPG over zwitterionic POPC to protonated OmpF, an effect not observed to the same extent for AmtB. Moreover, electrophysiology and mass-spectrometry-based ligand-binding experiments, at low pH, show that POPG can maintain OmpF channels in open conformations for extended time periods. Since the outer membrane is composed almost entirely of anionic lipopolysaccharide, with similar headgroup properties to POPG, such anionic lipid binding could prevent closure of OmpF channels, thereby increasing access of antibiotics that use porin-mediated pathways.

摘要

脂质和蛋白质之间的强相互作用主要通过带电头基和氨基酸侧链的结合来实现,因此两者的质子化状态都很重要。在这里,我们使用天然质谱法来探索脂质结合作为外膜孔蛋白 F (OmpF) 电荷的函数。我们发现,阴离子磷脂酰甘油 (POPG) 或两性离子磷脂酰胆碱 (POPC) 与 OmpF 的结合对外源喷雾极性敏感,而其他外膜或线粒体膜中的蛋白质的电荷影响则不太明显:亚铁血绿素受体 (FpvA) 或电压依赖性阴离子通道 (VDAC)。对于内膜蛋白,仅观察到边缘电荷诱导的差异:氨通道 (AmtB) 或机械敏感通道。为了理解这些不同的敏感性,我们对膜蛋白结构进行了广泛的生物信息学分析,发现 OmpF,以及在较小程度上的 FpvA 和 VDAC,在其脂质头部结合区域具有异常高的碱性和酸性残基的局部密度。在混合脂质双层中的粗粒度分子动力学模拟进一步表明,通过证明带正电荷的 OmpF 优先结合阴离子 POPG 而不是两性离子 POPC,电荷发生变化,这一效应在 AmtB 中没有观察到相同程度。此外,在低 pH 值下进行的电生理学和基于质谱的配体结合实验表明,POPG 可以使 OmpF 通道在开放构象中保持较长时间。由于外膜几乎完全由阴离子脂多糖组成,其头基性质与 POPG 相似,因此这种阴离子脂质结合可能会阻止 OmpF 通道关闭,从而增加使用孔蛋白介导途径的抗生素的进入。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/b6ff/6042154/d132c46a900f/pnas.1721152115fig01.jpg

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