首页> 外文期刊>Journal of the American Chemical Society >The Cold Denatured State of the C-terminal Domain of Protein L9 Is Compact and Contains Both Native and Non-native Structure
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The Cold Denatured State of the C-terminal Domain of Protein L9 Is Compact and Contains Both Native and Non-native Structure

机译:L9蛋白的C末端域的冷变性状态很紧凑,并且包含天然和非天然结构

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摘要

Cold denaturation is a general property of globular proteins, and the process provides insight into the origins of the cooperativity of protein folding and the nature of partially folded states. Unfortunately, studies of protein cold denaturation have been hindered by the fact that the cold denatured state is normally difficult to access experimentally. Special conditions such as addition of high concentrations of denaturant, encapsulation into reverse micelles, the formation of emulsified solutions, high pressure, or extremes of pH have been applied, but these can perturb the unfolded state of proteins. The cold denatured state of the C-terminal domain of the ribosomal protein L9 can be populated under native-like conditions by taking advantage of a destabilizing point mutation which leads to cold denaturation at temperatures above 0 ℃. This state is in slow exchange with the native state on the NMR time scale. Virtually complete backbone ~(16)N, ~(13)C, and ~1H as well as side-chain ~(13)C_β and ~1H_β chemical shift assignments were obtained for the cold denatured state at pH 5.7,12 ℃. Chemical shift analysis, backbone N-H residual dipolar couplings, amide proton NOEs, and R_2 relaxation rates all indicate that the cold denatured state of CTL9 (the C-terminal domain of the ribosomal protein L9) not only contains significant native-like secondary structure but also non-native structure. The regions corresponding to the two native a-helices show a strong tendency to populate helical Φ and Ψangles. The segment which connects a-helix 2 and β-strand 2 (residues 107-124) in the native state exhibits a significant preference to form non-native helical structure in the cold denatured state. The structure observed in the cold denatured state of the I98A mutant is similar to that observed in the pH 3.8 unfolded state of wild type CTL9 at 25 ℃, suggesting that it is a robust feature of the denatured state ensemble of this protein. The implications for protein folding and for studies of cold denatured states are discussed.
机译:冷变性是球状蛋白质的一般特性,该过程提供了深入了解蛋白质折叠协同作用的起源以及部分折叠状态的性质。不幸的是,蛋白质冷变性的研究由于通常难以通过实验获得冷变性状态而受到阻碍。已应用了特殊条件,例如添加高浓度的变性剂,将其封装在反胶束中,形成乳化溶液,高压或极端的pH值,但这些条件可能会扰乱蛋白质的未折叠状态。核糖体蛋白L9 C末端结构域的冷变性状态可以通过利用失稳点突变而在自然状态下进行,该突变会导致在0℃以上的温度下发生冷变性。在NMR时间尺度上,此状态与原始状态的交换缓慢。在pH 5.7,12℃时,获得了几乎完整的骨架〜(16)N,〜(13)C和〜1H以及侧链〜(13)C_β和〜1H_β的化学位移。化学位移分析,主链NH残留偶极偶合,酰胺质子NOE和R_2弛豫率均表明CTL9(核糖体蛋白L9的C端结构域)的冷变性状态不仅包含重要的天然样二级结构,而且还包含非本地结构。对应于两个本征a螺旋的区域表现出强烈的螺旋Φ和φ角填充趋势。以天然状态连接α-螺旋2和β-链2的链段(残基107-124)表现出显着的偏好,以在冷变性状态下形成非天然螺旋结构。 I98A突变体在冷变性状态下观察到的结构类似于在25℃在野生型CTL9的pH 3.8未折叠状态下观察到的结构,这表明它是该蛋白变性状态集合的强大特征。讨论了蛋白质折叠和冷变性状态研究的意义。

著录项

  • 来源
    《Journal of the American Chemical Society》 |2010年第13期|p.4669-4677|共9页
  • 作者单位

    Department of Chemistry, State University of New York at Stony Brook, Stony Brook, New York 11794-3400;

    Department of Biochemistry and Program in Structural Biology, Weill Cornell Medical College, New York, New York 10065;

    Department of Biochemistry and Program in Structural Biology, Weill Cornell Medical College, New York, New York 10065;

    Department of Biochemistry and Program in Structural Biology, Weill Cornell Medical College, New York, New York 10065;

    Department of Chemistry, State University of New York at Stony Brook, Stony Brook, New York 11794-3400 Graduate Program in Biochemistry and Structural Biology, and Graduate Program in Biophysics, State University of New York at Stony Brook, Stony Brook, New York 11794;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);美国《生物学医学文摘》(MEDLINE);美国《化学文摘》(CA);
  • 原文格式 PDF
  • 正文语种 eng
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  • 入库时间 2022-08-18 03:15:28

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