首页> 外文期刊>Biochimica et biophysica acta. Molecular cell research >Sorting of lipoproteins to the outer membrane in E. coli.
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Sorting of lipoproteins to the outer membrane in E. coli.

机译:在大肠杆菌中将脂蛋白分选到外膜。

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摘要

Escherichia coli lipoproteins are anchored to the periplasmic surface of the inner or outer membrane depending on the sorting signal. An ATP-binding cassette (ABC) transporter, LolCDE, releases outer membrane-specific lipoproteins from the inner membrane, causing the formation of a complex between the released lipoproteins and the periplasmic molecular chaperone LolA. When this complex interacts with outer membrane receptor LolB, the lipoproteins are transferred from LolA to LolB and then localized to the outer membrane. The structures of LolA and LolB are remarkably similar to each other. Both have a hydrophobic cavity consisting of an unclosed beta-barrel and an alpha-helical lid. Structural differences between the two proteins reveal the molecular mechanisms underlying the energy-independent transfer of lipoproteins from LolA to LolB. Strong inner membrane retention of lipoproteins occurs with Asp at position 2 and a few limited residues at position 3. The inner membrane retention signal functions as a Lol avoidance signal and inhibits the recognition of lipoproteins by LolCDE, thereby causing their retention in the inner membrane. The positive charge of phosphatidylethanolamine and the negative charge of Asp at position 2 are essential for Lol avoidance. The Lol avoidance signal is speculated to cause the formation of a tight lipoprotein-phosphatidylethanolamine complex that has five acyl chains and therefore cannot be recognized by LolCDE.
机译:根据分选信号,大肠杆菌脂蛋白锚定在内膜或外膜的周质表面。 ATP结合盒(ABC)转运蛋白LolCDE从内膜释放外膜特异性脂蛋白,导致释放的脂蛋白与周质分子伴侣LolA之间形成复合物。当该复合物与外膜受体LolB相互作用时,脂蛋白从LolA转移到LolB,然后定位在外膜上。 LolA和LolB的结构非常相似。两者均具有由未封闭的β-桶和α-螺旋盖组成的疏水腔。两种蛋白质之间的结构差异揭示了脂蛋白从LolA到LolB的能量非依赖转移的分子机制。在2位的Asp和在3位的少量残基会发生脂蛋白的强大内膜保留。内膜保留信号起Lol避免信号的作用,并抑制LolCDE对脂蛋白的识别,从而导致它们保留在内膜中。磷脂酰乙醇胺的正电荷和2位的Asp负电荷对于避免Lol至关重要。推测Lol避免信号会导致形成紧密的脂蛋白-磷脂酰乙醇胺复合物,该复合物具有五个酰基链,因此无法被LolCDE识别。

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