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核糖核酸酶A早期折叠中间体的性质。

Nature of the early folding intermediate of ribonuclease A.

作者信息

Udgaonkar J B, Baldwin R L

机构信息

Department of Biochemistry, Beckman Center, Stanford University School of Medicine, California 94305-5307.

出版信息

Biochemistry. 1995 Mar 28;34(12):4088-96. doi: 10.1021/bi00012a027.

Abstract

A previous study of the folding pathway of the major unfolded species of ribonuclease A by pulsed hydrogen exchange [Udgaonkar, J. B., & Baldwin, R. L. (1990) Proc. Natl. Acad. Sci. U.S.A. 87, 8197-8201] showed that there is a major early folding intermediate (Il) that resembles a molten globule species in having stable secondary structure while lacking buried tyrosine side chains. Earlier work showed that there is also a late native-like folding intermediate (IN) that can bind the specific inhibitor 2'CMP and that has buried tyrosine side chains. Results are reported here indicating that Il has a well-developed tertiary structure even though its tyrosine side chains are not buried. First, optical stopped-flow experiments suggest that Il binds 2'CMP. Second, the protection against hydrogen exchange is similar in Il and IN for almost all protected amide protons studied. Third, analysis of the mechanism of hydrogen exchange in Il confirms the large protection factors reported earlier for probes in the beta-sheet of ribonuclease A and indicates that the beta-sheet is formed in Il. Other experiments are also reported that test the interpretation of pulsed hydrogen exchange studies of the folding pathway of ribonuclease A.

摘要

先前一项关于核糖核酸酶A主要未折叠物种折叠途径的脉冲氢交换研究[乌德冈卡尔,J. B.,& 鲍德温,R. L.(1990年)《美国国家科学院院刊》87,8197 - 8201]表明,存在一个主要的早期折叠中间体(I1),它类似于熔球态物种,具有稳定的二级结构,但缺少埋藏的酪氨酸侧链。早期研究表明,还存在一个晚期类天然折叠中间体(IN),它能结合特异性抑制剂2' - CMP,且有埋藏的酪氨酸侧链。此处报告的结果表明,尽管I1的酪氨酸侧链未被埋藏,但其具有发育良好的三级结构。首先,光停流实验表明I1能结合2' - CMP。其次,对于几乎所有研究的受保护酰胺质子,I1和IN中的氢交换保护情况相似。第三,对I1中氢交换机制的分析证实了先前报道的核糖核酸酶Aβ - 折叠中探针的大保护因子,并表明I1中形成了β - 折叠。还报告了其他实验,这些实验检验了对核糖核酸酶A折叠途径的脉冲氢交换研究的解释。

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