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首页> 外文期刊>Biochemistry >Conformational unfolding studies of three-disulfide mutants of bovine pancreatic ribonuclease A and the coupling of proline isomerization to disulfide redox reactions.
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Conformational unfolding studies of three-disulfide mutants of bovine pancreatic ribonuclease A and the coupling of proline isomerization to disulfide redox reactions.

机译:牛胰核糖核酸酶A的三个二硫键突变体的构象展开研究以及脯氨酸异构化与二硫键的氧化还原反应的耦合。

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The equilibrium stability and conformational unfolding kinetics of the [C40A, C95A] and [C65S, C72S] mutants of bovine pancreatic ribonuclease A (RNase A) have been studied. These mutants are analogues of two nativelike intermediates, des[40-95] and des[65-72], whose formation is rate-limiting for oxidative folding and reductive unfolding at 25 degrees C and pH 8.0. Upon addition of guanidine hydrochloride, both mutants exhibit a fast conformational unfolding phase when monitored by absorbance and fluorescence, as well as a slow phase detected only by fluorescence which corresponds to the isomerizations of Pro93 and Pro114. The amplitudes of the slow phase indicate that the two prolines, Pro93 and Pro114, are fully cis in the folded state of the mutants and furthermore that the 40-95 disulfide bond is not responsible for the quenching of Tyr92 fluorescence observed in the slow unfolding phase, contrary to an earlier proposal [Rehage, A., and Schmid, F. X. (1982) Biochemistry 21, 1499-1505]. The ratio of the kinetic unfolding m value to the equilibrium m value indicates that the transition state for conformational unfolding in the mutants exposes little solvent-accessible area, as in the wild-type protein, indicating that the unfolding pathway is not dramatically altered by the reduction of the 40-95 or 65-72 disulfide bond. The stabilities of the folded mutants are compared to that of wild-type RNase A. These stabilities indicate that the reduction of des[40-95] to the 2S species is rate-limited by global conformational unfolding, whereas that of des[65-72] is rate-limited by local conformational unfolding. The isomerization of Pro93 may be rate-limiting for the reduction of the 40-95 disulfide bond in the native protein and in the des[65-72] intermediate.
机译:研究了牛胰核糖核酸酶A(RNase A)的[C40A,C95A]和[C65S,C72S]突变体的平衡稳定性和构象展开动力学。这些突变体是两种天然样中间体des [40-95]和des [65-72]的类似物,它们的形成在25℃和pH 8.0下限制了氧化折叠和还原展开的速率。加入盐酸胍后,当通过吸光度和荧光监测时,两个突变体均显示出快速构象展开阶段,以及仅通过荧光检测出的慢相,这对应于Pro93和Pro114的异构化。慢相的振幅表明两个脯氨酸Pro93和Pro114在突变体的折叠状态下是完全顺式的,而且40-95二硫键与慢展开相中观察到的Tyr92荧光的猝灭无关。与先前的提议相反[Rehage,A.和Schmid,FX(1982)Biochemistry 21,1499-1505]。动力学展开m值与平衡m值之比表明,突变体中构象展开的过渡状态像野生型蛋白一样,几乎没有溶剂可及区域,这表明展开路径不会被野生型蛋白显着改变。 40-95或65-72二硫键的还原将折叠后的突变体的稳定性与野生型RNase A的稳定性进行比较。这些稳定性表明,des [40-95]还原为2S物种的速率受到整体构象展开速率的限制,而des [65- [72]受到局部构象展开的速率限制。 Pro93的异构化可能会限制天然蛋白和des [65-72]中间体中40-95二硫键的还原。

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