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Two-State Folding of the Outer Membrane Protein X into a Lipid Bilayer Membrane

机译:外膜蛋白X的两态折叠成脂质双层膜

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Folding and insertion of beta-barrel membrane proteins into native membranes is efficiently catalyzed by beta-barrel assembly machineries. Understanding this catalysis requires a detailed description of the corresponding uncatalyzed folding mechanisms, which however have so far remained largely unclear. Herein, the folding and membrane insertion of the E.coli outer membrane protein X (OmpX) into 1,2-didecanoyl-sn-glycero-3-phosphocholine (PC10:0) membranes is resolved at the atomic level. By combining four different experimental techniques, global folding kinetics were correlated with global and local hydrogen bond-formation kinetics. Under a well-defined reaction condition, these processes follow single-exponential velocity laws, with rate constants identical within experimental error. The data thus establish, at atomic resolution, that OmpX folds and inserts into the lipid bilayer of PC10:0 liposomes by a two-state mechanism.
机译:β-桶组件机械有效地催化β-桶膜蛋白的折叠和插入天然膜。 理解该催化需要对相应的未仿造折叠机制的详细描述,然而到目前为止仍然很大程度上不清楚。 本文,在原子水平下拆分将E.coli外膜蛋白X(OMPX)的折叠和膜插入1,2-DideCanoyl-Sn-甘油-3-普啉啉(PC10:0)膜。 通过组合四种不同的实验技术,全球折叠动力学与全局和局部氢键形成动力学相关。 在明确定义的反应条件下,这些过程遵循单指数速度定律,在实验误差内的速率常数相同。 因此,数据以原子分辨率建立的数据通过双状态机制将OMPX折叠并插入PC10:0脂质体的脂质双层。

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