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核糖体蛋白L7/L12的构象稳定性:pH值、温度和氯化胍的影响

Conformational stability of ribosomal protein L7/L12: effects of pH, temperature, and guanidinium chloride.

作者信息

Luer C A, Wong K P

出版信息

Biochemistry. 1980 Jan 8;19(1):176-83. doi: 10.1021/bi00542a027.

Abstract

The effects of pH, temperature, and guanidinium chloride on the conformation of ribosomal protein L7/L12 have been investigated in order to understand the stability of this protein dimer. The results indicate that many of the molecular forces stabilizing the conformation of the dimer are disrupted at low pH or high temperature. These acid- and thermal-denatured states, however, still retain considerable secondary structure. Approximately half of the alpha-helical content present in the native protein remains intact at pH below 2 and at temperatures above 90 degrees C. Further denaturation of the acid-denatured protein by 6 M guanidinium chloride results in a state which still contains approximately 20% alpha helix. Similar amounts of residual conformation remain when the native L7/L12 dimer is denatured with guanidinium chloride. Thermodynamic analysis of the conformational transitions studied indicates that none is compatible with a simple two-state process. The complexity of these denaturation data and the structural characterizations of the various denatured states are consistent with the possible existence of structural domains in the protein molecule possessing different conformational stabilities.

摘要

为了解核糖体蛋白L7/L12二聚体的稳定性,研究了pH值、温度和氯化胍对其构象的影响。结果表明,在低pH值或高温下,许多稳定二聚体构象的分子力会被破坏。然而,这些酸变性和热变性状态仍保留相当多的二级结构。在pH值低于2和温度高于90℃时,天然蛋白中约一半的α-螺旋含量仍保持完整。用6M氯化胍对酸变性蛋白进一步变性,会产生一种仍含有约20%α-螺旋的状态。当天然L7/L12二聚体用氯化胍变性时,也会保留相似数量的残余构象。对所研究的构象转变进行的热力学分析表明,没有一个与简单的两态过程相符。这些变性数据的复杂性以及各种变性状态的结构表征与蛋白质分子中可能存在具有不同构象稳定性的结构域是一致的。

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