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首页> 外文期刊>Journal of Molecular Biology >SecA, the motor of the secretion machine, binds diverse partners on one interactive surface.
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SecA, the motor of the secretion machine, binds diverse partners on one interactive surface.

机译:SecA,分泌机的马达,在一个互动的表面上将各种伙伴结合在一起。

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摘要

In all living cells, regulated passage across membranes of specific proteins occurs through a universally conserved secretory channel. In bacteria and chloroplasts, the energy for the mechanical work of moving polypeptides through that channel is provided by SecA, a regulated ATPase. Here, we use site-directed spin labeling and electron paramagnetic resonance spectroscopy to identify the interactive surface used by SecA for each of the diverse binding partners encountered during the dynamic cycle of export. Although the binding sites overlap, resolution at the level of aminoacyl side chains allows us to identify contacts that are unique to each partner. Patterns of constraint and mobilization of residues on that interactive surface suggest a conformational change that may underlie the coupling of ATP hydrolysis to precursor translocation.
机译:在所有活细胞中,特定蛋白质的膜之间的调节传递是通过普遍保守的分泌通道发生的。在细菌和叶绿体中,通过调节的ATPase SecA为通过该通道移动多肽的机械功提供能量。在这里,我们使用定点自旋标记和电子顺磁共振波谱技术来确定SecA用于动态出口周期中遇到的每个不同结合伙伴的相互作用表面。尽管结合位点重叠,但在氨酰基侧链水平上的分离使我们能够鉴定出每个伴侣唯一的接触。相互作用表面上残基的约束和动员模式表明构象变化,可能是ATP水解与前体易位耦合的基础。

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