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Identification of three phases in Onconase refolding

机译:确定Onconase折叠的三个阶段

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Onconase is an extremely stable member of the RNase A superfamily. The increase in the thermodynamic stability by 20 kJ mol(-1) in comparison to RNase A was expected to result in altered folding behavior. Despite the lack of cis-Pro residues in native Onconase, refolding at low concentrations of guanidine hydrochloride was complex and showed three kinetic phases (fast, medium, and slow), with rate constants differing by a factor of about 10 each. None of the phases could be accelerated by peptidyl-prolyl cis-trans isomerases, pointing to the absence of kinetic phases that are limited by Pro isomerization. The detailed analysis by various probes indicates that the burial of the N-terminal Trp3, which is associated with the restoration of the active site, occurs in the slow phase, i.e. in the last step of refolding. Evidently, in contrast to the folding of RNase A, there is no catalytically active native-like intermediate in the folding of Onconase.
机译:Onconase是RNase A超家族的极其稳定的成员。与RNase A相比,热力学稳定性提高了20 kJ mol(-1),预计会导致折叠行为发生变化。尽管天然Onconase中缺少顺式Pro残基,但在低浓度盐酸胍中的复性很复杂,并显示出三个动力学相(快,中和慢),速率常数各相差约10倍。肽基-脯氨酰顺反异构酶不能加速任何相,这表明没有受到Pro异构化限制的动力学相。各种探针的详细分析表明,与活性位点的恢复有关的N-末端Trp3的埋葬发生在缓慢阶段,即在重折叠的最后一步。显然,与RNase A的折叠相反,在Onconase的折叠中没有催化活性的天然样中间体。

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