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Orientation of SecA and SecB in Complex, Derived from Disulfide Cross-Linking▿ †

机译:源自二硫键交联的SecA和SecB在复合物中的方向▿†

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摘要

SecA is the ATPase that acts as the motor for protein export in the general secretory, or Sec, system of Escherichia coli. The tetrameric cytoplasmic chaperone SecB binds to precursors of exported proteins before they can become stably folded and delivers them to SecA. During this delivery step, SecB binds to SecA. The complex between SecA and SecB that is maximally active in translocation contains two protomers of SecA bound to a tetramer of SecB. The aminoacyl residues on each protein that are involved in binding the other have previously been identified by site-directed spin labeling and electron paramagnetic resonance (EPR) spectroscopy; however, that study provided no information concerning the relative orientation of the proteins within the complex. Here we used our extensive collection of single-cysteine variants of the two proteins and subjected pairwise combinations of SecA and SecB to brief oxidation to identify residues in close proximity. These data were used to generate a model for the orientation of the two proteins within the complex.
机译:SecA是ATP酶,可在大肠杆菌的一般分泌物或Sec系统中充当蛋白质输出的驱动器。四聚体细胞质分子伴侣SecB与输出蛋白的前体结合,然后才能被稳定折叠并传递至SecA。在此传递步骤中,SecB绑定到SecA。 SecA和SecB之间的复合物在转运中具有最大活性,其中包含两个SecA前体与SecB的四聚体结合。先前已通过定点自旋标记和电子顺磁共振(EPR)光谱鉴定了每个蛋白质上与另一个蛋白质结合的氨酰基残基。但是,该研究没有提供有关复合物中蛋白质相对取向的信息。在这里,我们使用了我们广泛收集的两种蛋白质的单半胱氨酸变体,并对SecA和SecB进行成对组合以简短地进行氧化,以鉴定紧密相邻的残基。这些数据用于生成复合物中两种蛋白质的方向模型。

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