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首页> 外文期刊>The journal of physical chemistry, B. Condensed matter, materials, surfaces, interfaces & biophysical >pH-Dependent Conformational Changes Due to Ionizable Residues in a Hydrophobic Protein Interior: The Study of L25K and L125K Variants of SNase
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pH-Dependent Conformational Changes Due to Ionizable Residues in a Hydrophobic Protein Interior: The Study of L25K and L125K Variants of SNase

机译:疏水性蛋白质内部可电离残留物的pH依赖性构象变化:Snase的L25K和L125K变体的研究

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摘要

Ionizable residues in the hydrophobic interior of certain proteins are known to play important roles in life processes like energy transduction and enzyme catalysis. These internal ionizable residues show experimental apparent pK(a) values having large shifts as compared to their values in solution. In the present work, we study the pH-dependent conformational changes undergone by two variants of staphylococcal nuclease (SNase), L25K and L12SK, using pH replica exchange molecular dynamics (pH-REMD) in explicit solvent. Our results show that the observed pK(a) of Lys2S and Lys125 are significantly different than their pK(a) in solution. We observed that the internal lysine residues prefer to be water-exposed when protonated at low pH, but they remain buried within the hydrophobic pocket when deprotonated at high pH. Using thermodynamic laws, we estimate the microscopic conformation-specific pK(a) of the water-exposed and buried conformations of the internal lysine residues and explain their relation to the macroscopic observed pK(a) values. We present the differences in the microscopic mechanisms that lead to similar experimentally observed apparent pK(a) of Lys2S and Lys125, and explain the need of thermodynamic models of different complexities to account for our calculations. We see that L25K displays pH-dependent fluctuations throughout the entire beta barrel and the alpha 1 helix. In contrast, pH-independent fluctuations are observed in L125K, primarily limited to the alpha 3 helix. The present computational study offers a detailed atomistic understanding of the determinants of the observed anomalous pK(a) of internal ionizable residues, bolstering the experimental findings.
机译:已知某些蛋白质疏水内部的可电离残留物在能量转导和酶催化等生命过程中起重要作用。这些内部可电离残留物显示出与溶液中的值相比具有大移位的实验表观PK(A)值。在本作的工作中,我们研究了在明确溶剂中使用pH复制品交换分子动态(pH-REMD)的葡萄球菌核酸酶(SNASE),L25K和L12SK的两种变体所经历的pH依赖性构象变化。我们的结果表明,观察到的Lys2和Lys125的PK(A)显着不同于它们在溶液中的PK(A)。我们观察到内赖氨酸残基更喜欢在低pH下质子化时暴露出水,但是当在高pH下反驳时它们保持埋在疏水口腔内。使用热力学定律,我们估计内赖氨酸残基的水暴露和掩埋构象的微观构象特异性PK(A),并解释它们与宏观观察的PK(A)值的关系。我们介绍了导致类似实验观察Lys2s和Lys125的类似实验观察到的显式PK(A)的显微镜机制的差异,并说明了不同复杂性的热力学模型,以考虑我们的计算。我们看到L25K在整个β桶和alpha 1螺旋中显示pH依赖的波动。相反,在L125K中观察到pH无关的波动,主要限于α3螺旋。目前的计算研究提供了对所观察到的内部可电离残基的异常PK(A)的决定因素的详细原子理解,抵抗实验结果。

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