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Stability and folding properties of a model beta-sheet protein, Escherichia coli CspA.

机译:模型β-折叠蛋白Escherichia coli CspA的稳定性和折叠特性。

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摘要

Although beta-sheets represent a sizable fraction of the secondary structure found in proteins, the forces guiding the formation of beta-sheets are still not well understood. Here we examine the folding of a small, all beta-sheet protein, the E. coli major cold shock protein CspA, using both equilibrium and kinetic methods. The equilibrium denaturation of CspA is reversible and displays a single transition between folded and unfolded states. The kinetic traces of the unfolding and refolding of CspA studied by stopped-flow fluorescence spectroscopy are monoexponential and thus also consistent with a two-state model. In the absence of denaturant, CspA refolds very fast with a time constant of 5 ms. The unfolding of CspA is also rapid, and at urea concentrations above the denaturation midpoint, the rate of unfolding is largely independent of urea concentration. This suggests that the transition state ensemble more closely resembles the native state in terms of solvent accessibility than the denatured state. Based on the model of a compact transition state and on an unusual structural feature of CspA, a solvent-exposed cluster of aromatic side chains, we propose a novel folding mechanism for CspA. We have also investigated the possible complications that may arise from attaching polyhistidine affinity tags to the carboxy and amino termini of CspA.
机译:尽管β-折叠片代表了蛋白质中二级结构的相当大的一部分,但引导β-折叠片形成的力仍未被很好地理解。在这里,我们使用平衡和动力学方法研究了一个小的全β-折叠蛋白,即大肠杆菌主要的冷休克蛋白CspA的折叠。 CspA的平衡变性是可逆的,并且在折叠状态和未折叠状态之间显示单个过渡。停止流荧光光谱法研究的CspA展开和重新折叠的动力学轨迹是单指数的,因此也与二态模型一致。在没有变性剂的情况下,CspA的重折叠速度非常快,时间常数为5 ms。 CspA的展开也很快,并且在尿素浓度高于变性中点时,展开速率在很大程度上与尿素浓度无关。这表明在溶剂可及性方面,过渡态集合比变性态更类似于天然态。基于紧凑的过渡态模型和CspA,溶剂暴露的芳族侧链簇的异常结构特征,我们提出了一种新颖的CspA折叠机制。我们还研究了将多组氨酸亲和标签连接到CspA的羧基和氨基末端可能引起的并发症。

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