Mogensen Jesper E, Otzen Daniel E
Department of Life Sciences, Aalborg University, Sohngaardsholmsvej 49, DK-9000 Aalborg, Denmark.
Mol Microbiol. 2005 Jul;57(2):326-46. doi: 10.1111/j.1365-2958.2005.04674.x.
The outer membrane is the first line of contact between Gram-negative bacteria and their external environment. Embedded in the outer membrane are integral outer membrane proteins (OMPs) that perform a diverse range of tasks. OMPs are synthesized in the cytoplasm and are translocated across the inner membrane and probably diffuse through the periplasm before they are inserted into the outer membrane in a folded and biologically active form. Passage through the periplasm presents a number of challenges, due to the hydrophobic nature of the OMPs and the choice of membranes into which they can insert. Recently, a number of periplasmic proteins and one OMP have been shown to play a role in OMP biogenesis. In this review, we describe what is known about these folding factors and how they function in a biological context. In particular, we focus on how they interact with the OMPs at the molecular level and present a comprehensive overview of data relating to a possible effect on OMP folding yield and kinetics. Furthermore, we discuss the role of lipo-chaperones, i.e. lipopolysaccharide and phospholipids, in OMP folding. Important advances have clearly been made in the field, but much work remains to be done, particularly in terms of describing the biophysical basis for the chaperone-OMP interactions which so intricately regulate OMP biogenesis.
外膜是革兰氏阴性菌与其外部环境接触的第一道防线。嵌入外膜的是整合外膜蛋白(OMPs),它们执行各种各样的任务。OMPs在细胞质中合成,穿过内膜,可能在周质中扩散,然后以折叠的、具有生物活性的形式插入外膜。由于OMPs的疏水性以及它们可插入的膜的选择,穿过周质存在许多挑战。最近,一些周质蛋白和一种OMP已被证明在OMP生物合成中发挥作用。在这篇综述中,我们描述了关于这些折叠因子的已知信息以及它们在生物学环境中的功能。特别是,我们关注它们如何在分子水平上与OMPs相互作用,并全面概述与对OMP折叠产率和动力学可能产生的影响相关的数据。此外,我们讨论了脂伴侣(即脂多糖和磷脂)在OMP折叠中的作用。该领域显然已经取得了重要进展,但仍有许多工作要做,特别是在描述伴侣蛋白 - OMP相互作用的生物物理基础方面,这种相互作用如此复杂地调节着OMP生物合成。