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Role of denatured-state properties in chaperonin action probed by single-molecule spectroscopy

机译:变性状态特性在单分子光谱探测伴侣蛋白作用中的作用

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摘要

The bacterial chaperonin GroEL/GroES assists folding of a broad spectrum of denatured and misfolded proteins. Here, we explore the limits of this remarkable promiscuity by mapping two denatured proteins with very different conformational properties, rhodanese and cyclophilin A, during binding and encapsulation by GroEL/GroES with single-molecule spectroscopy, microfluidic mixing, and ensemble kinetics. We find that both proteins bind to GroEL with high affinity in a reaction involving substantial conformational adaptation. However, whereas the compact denatured state of rhodanese is encapsulated efficiently upon addition of GroES and ATP, the more expanded and unstructured denatured cyclophilin A is not encapsulated but is expelled into solution. The origin of this surprising disparity is the weaker interactions of cyclophilin A with a transiently formed GroEL-GroES complex, which may serve as a crucial checkpoint for substrate discrimination.
机译:细菌伴侣蛋白GroEL / GroES有助于折叠多种变性和错误折叠的蛋白质。在这里,我们通过在具有单分子光谱,微流体混合和集成动力学的GroEL / GroES结合和包封过程中绘制两个构象性质非常不同的变性蛋白质(罗丹明和亲环蛋白A),探索了这种显着混杂的局限性。我们发现这两种蛋白质在涉及大量构象适应的反应中以高亲和力结合到GroEL。然而,尽管在加入GroES和ATP后有效地封装了罗丹丹的致密变性状态,但未封装更膨胀和更结构化的变性亲环蛋白A却被驱逐到溶液中。这种令人惊讶的差异的根源是亲环蛋白A与瞬时形成的GroEL-GroES复合物之间较弱的相互作用,这可能是区分底物的关键检查点。

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