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An energy transduction mechanism used in bacterial flagellar type III protein export

机译:用于细菌鞭毛III型蛋白输出的能量转导机制

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Flagellar proteins of bacteria are exported by a specific export apparatus. FliI ATPase forms a complex with FliH and FliJ and escorts export substrates from the cytoplasm to the export gate complex, which is made up of six membrane proteins. The export gate complex utilizes proton motive force across the cytoplasmic membrane for protein translocation, but the mechanism remains unknown. Here we show that the export gate complex by itself is a proton–protein antiporter that uses the two components of proton motive force, Δψ and ΔpH, for different steps of the protein export process. However, in the presence of FliH, FliI and FliJ, a specific binding of FliJ with an export gate membrane protein, FlhA, is brought about by the FliH–FliI complex, which turns the export gate into a highly efficient, Δψ-driven protein export apparatus.. ? 2011 Nature Publishing Group, a division of Macmillan Publishers Limited. All Rights Reserved.
机译:细菌的鞭毛蛋白通过特定的输出设备输出。 FliI ATPase与FliH和FliJ形成复合物,并保卫出口底物从细胞质到出口门复合物,后者由六种膜蛋白组成。出口门复合体利用跨细胞质膜的质子原动力进行蛋白质转运,但是其机制仍然未知。在这里,我们证明了出口门复合物本身就是一个质子-蛋白质反转运蛋白,它在质子输出过程的不同步骤中使用质子动力的两个分量Δψ和ΔpH。但是,在存在FliH,FliI和FliJ的情况下,FliH-FliI复合物会导致FliJ与出口门膜蛋白FlhA发生特异性结合,这会使出口门变成高效的Δψ驱动蛋白出口仪器2011年自然出版集团(Macmillan Publishers Limited的子公司)。版权所有。

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