首页> 外文期刊>Journal of Molecular Biology >SecA folding kinetics: a large dimeric protein rapidly forms multiple native states.
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SecA folding kinetics: a large dimeric protein rapidly forms multiple native states.

机译:SecA折叠动力学:大的二聚体蛋白迅速形成多种天然状态。

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摘要

SecA, a 202 kDa dimeric protein, is the ATPase for the Sec-dependent translocase of precursor proteins in vivo. SecA must undergo conformational changes, which may involve dissociation into a monomer, as it translocates the precursor protein across the inner membrane. To better understand the dynamics of SecA in vivo, protein folding studies to probe the native, intermediate, and unfolded species of SecA in vitro have been done. SecA folds through a stable dimeric intermediate and dimerizes in the dead-time of a manual-mixing kinetic experiment ( approximately 5-7 seconds). Here, stopped-flow fluorescence and CD, as well as ultra-rapid continuous flow fluorescence techniques, were used to further probe the rapid folding kinetics of SecA. In the absence of urea, rapid, near diffusion-limited ( approximately 10(9)M(-1)s(-1)) SecA dimerization occurs following a rate-limiting unimolecular rearrangement of a rapidly formed intermediate. Multiple kinetic folding and unfolding phases were observed and SecA was shown to have multiple native and unfolded states. Using sequential-mixing stopped-flow experiments, SecA was determined to fold via parallel channels with sequential intermediates. These results confirm that SecA is a highly dynamic protein, consistent with the rapid, major conformational changes it must undergo in vivo.
机译:SecA是一种202 kDa的二聚体蛋白,是体内前体蛋白的Sec依赖性转位酶的ATPase。 SecA必须经历构象变化,这可能涉及解离成单体,因为它使前体蛋白跨内膜转运。为了更好地了解体内SecA的动力学,已经进行了蛋白质折叠研究,以在体外探测SecA的天然,中间和未折叠物种。 SecA通过稳定的二聚体中间体折叠,并在手动混合动力学实验的死时间(约5-7秒)内二聚。在这里,停止流荧光和CD,以及超快速连续流荧光技术,被用来进一步探测SecA的快速折叠动力学。在不存在尿素的情况下,快速形成中间体的限速单分子重排后,发生快速,接近扩散受限(约10(9)M(-1)s(-1))的SecA二聚作用。观察到多个动力学折叠和展开阶段,并且显示出SecA具有多个天然和未折叠状态。使用顺序混合停止流实验,确定SecA通过具有顺序中间体的平行通道折叠。这些结果证实,SecA是一种高度动态的蛋白质,与其在体内必须经历的快速,主要构象变化是一致的。

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