首页> 外文期刊>Biochemistry >NMR structural analysis of an analog of an intermediate formed in the rate-determining step of one pathway in the oxidative folding of bovine pancreatic ribonuclease A: automated analysis of 1H, 13C, and 15N resonance assignments for wild-type and (C
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NMR structural analysis of an analog of an intermediate formed in the rate-determining step of one pathway in the oxidative folding of bovine pancreatic ribonuclease A: automated analysis of 1H, 13C, and 15N resonance assignments for wild-type and (C

机译:在牛胰核糖核酸酶A的氧化折叠中一个途径的速率决定步骤中形成的中间体类似物的NMR结构分析:野生型和(C的1H,13C和15N共振分配的自动分析

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A three-disulfide intermediate, des-[65-72] RNase A, lacking the disulfide bond between Cys65 and Cys72, is formed in one of the rate-determining steps of the oxidative regeneration pathways of bovine pancreatic ribonuclease A (RNase A). An analog of this intermediate, [C65S, C72S] RNase A, has been characterized in terms of structure and thermodynamic stability. Triple-resonance NMR data were analyzed using an automated assignment program, AUTOASSIGN. Nearly all backbone 1H, 13C, and 15N resonances and most side-chain 13C(beta) resonances of both wild-type (wt) and [C65S, C72S] RNase A were assigned unambiguously. Analysis of NOE, 13C(alpha) chemical shift, and 3J(H(N)-H(alpha)) scalar coupling data indicates that the regular backbone structure of the major form of [C65S, C72S] RNase A is very similar to that of the major form of wt RNase A, although small structural differences are indicated in the mutation site and in spatially adjacent beta-sheet structures comprising the hydrophobic core. Thermodynamic analysis demonstrates that [C65S, C72S] RNase A (Tm of 38.5 degrees C) is significantly less stable than wt RNase A (Tm of 55.5 degrees C) at pH 4.6. Although the structural comparison of wt RNase A and this analog of an oxidative folding intermediate indicates only localized effects around the Cys65 and Cys72 sites, these thermodynamic measurements indicate that formation of the fourth disulfide bond, Cys65-Cys72, on this oxidative folding pathway results in global stabilization of the native chain fold. This conclusion is supported by comparisons of amide 1H/2H exchange rates which are significantly faster throughout the entire structure of [C65S, C72S] RNase A than in wt RNase A. More generally, our study indicates that the C65-C72 disulfide bond of RNase A contributes significantly in stabilizing the structure of the hydrophobic core of the native protein. Formation of this disulfide bond in the final step of this oxidative folding pathway provides significant stabilization of the native-like structure that is present in the corresponding three-disulfide folding intermediate.
机译:在牛胰腺核糖核酸酶A(RNase A)的氧化再生途径的速率决定步骤之一中,形成了一个三半硫化物中间体des-[[65-72] RNase A,在Cys65和Cys72之间缺乏二硫键。该中间体[C65S,C72S] RNase A的类似物已通过结构和热力学稳定性进行了表征。使用自动分配程序AUTOASSIGN分析三共振NMR数据。几乎明确分配了野生型(wt)和[C65S,C72S] RNase A的几乎所有主链1H,13C和15N共振,以及大多数侧链13Cβ共振。对NOE,13Cα化学位移和3J(H(N)-Hα)标量耦合数据的分析表明,主要形式的[C65S,C72S] RNase A的规则骨架结构非常类似于尽管在突变位点和在包含疏水核心的空间上相邻的β-折叠结构中指出了小的结构差异,但仍是wt RNase A主要形式的“结构”。热力学分析表明,在pH 4.6时,[C65S,C72S] RNase A(Tm为38.5摄氏度)比wt RNase A(Tm为55.5摄氏度)明显不稳定。尽管wt RNase A和该氧化折叠中间体的类似物的结构比较表明仅在Cys65和Cys72位点附近有局部作用,但这些热力学测量结果表明,在该氧化折叠途径上形成第四个二硫键Cys65-Cys72导致本地连锁店的全球稳定。通过比较酰胺1H / 2H交换速率可以支持此结论,酰胺交换1H / 2H交换速率在整个[C65S,C72S] RNase A的整个结构中比在wt RNase A中显着更快。更广泛的说,我们的研究表明RNase的C65-C72二硫键A在稳定天然蛋白质的疏水核心的结构中起重要作用。在该氧化折叠途径的最后步骤中该二硫键的形成提供了存在于相应的三二硫折叠中间体中的天然样结构的显着稳定。

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