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首页> 外文期刊>Journal of Molecular Biology >CONTRIBUTION OF HYDROPHOBIC RESIDUES TO THE STABILITY OF HUMAN LYSOZYME - CALORIMETRIC STUDIES AND X-RAY STRUCTURAL ANALYSIS OF THE FIVE ISOLEUCINE TO VALINE MUTANTS
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CONTRIBUTION OF HYDROPHOBIC RESIDUES TO THE STABILITY OF HUMAN LYSOZYME - CALORIMETRIC STUDIES AND X-RAY STRUCTURAL ANALYSIS OF THE FIVE ISOLEUCINE TO VALINE MUTANTS

机译:疏水残基对人类溶菌酶稳定性的贡献-五种异亮氨酸对缬氨酸突变体的量热研究和X射线结构分析

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In order to understand the contribution of hydrophobic residues to the conformational stability of human lysozyme, five Ile mutants (Ile --> Val) in the interior of the protein were constructed. The thermodynamic parameters characterizing the denaturation of these mutant proteins were determined by scanning calorimetry, and the three-dimensional structure of each mutant protein was solved at high resolution by X-ray crystallography. The thermodynamic analyses at 64.9 degrees C and at pH 2.7 revealed the following. (1) The stabilities of all the mutant proteins were decreased as compared with that of the wild-type protein. (2) The changes in the calorimetric enthalpies were larger than those in the Gibbs energies, and were compensated by entropy changes. (3) The destabilization mechanism of the mutant proteins differs, depending on the location of the mutation sites. X-ray analyses showed that the overall structures of all the mutant human lysozymes examined were identical to that of the wild-type protein, and only small structural rearrangements were observed locally around some of the mutation sites. The most striking change among the mutant proteins was found in the mutant protein, 159V, which contains a new water molecule in the cavity created by the mutation. The thermodynamic stabilities of the mutant proteins are discussed in light of the high-resolution X-ray structures of the wild-type and five mutant human lysozymes examined. (C) 1995 Academic Press Limited [References: 39]
机译:为了了解疏水残基对人溶菌酶构象稳定性的贡献,在蛋白质内部构建了五个Ile突变体(Ile-> Val)。通过扫描量热法测定表征这些突变蛋白变性的热力学参数,并通过X射线晶体学高分辨率解析每种突变蛋白的三维结构。在64.9摄氏度和pH 2.7的热力学分析表明。 (1)所有突变蛋白的稳定性均低于野生型蛋白。 (2)量热焓的变化大于吉布斯能量的变化,并由熵的变化补偿。 (3)突变蛋白的去稳定机制因突变位点的位置而异。 X射线分析表明,所检查的所有突变型人溶菌酶的总体结构与野生型蛋白的结构相同,并且在某些突变位点附近仅观察到小的结构重排。突变蛋白中最显着的变化是突变蛋白159V,该蛋白在由突变产生的空腔中包含一个新的水分子。根据野生型的高分辨率X射线结构和所研究的五种突变型人溶菌酶,讨论了突变型蛋白的热力学稳定性。 (C)1995 Academic Press Limited [参考文献:39]

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