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首页> 外文期刊>Biochemistry >IMPORTANCE OF TWO BURIED SALT BRIDGES IN THE STABILITY AND FOLDING PATHWAY OF BARNASE
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IMPORTANCE OF TWO BURIED SALT BRIDGES IN THE STABILITY AND FOLDING PATHWAY OF BARNASE

机译:两个潜盐桥在巴南斯河稳定性和折叠路径中的重要性

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摘要

The importance of two buried salt bridges in barnase in the stability of its folded state, the major transition state for unfolding, and a folding intermediate has been analyzed by protein engineering, kinetic, and thermodynamic studies. The aspartate residues in the bridges Arg69-Asp93 and Arg83-Asp75 were replaced by the isosteric analogue asparagine, while various replacements were probed for the positively charged arginine partners. The mutations are very destabilizing, lowering stability by up to 5.4 kcal/mol. A value of 3.0-3.5 kcal/mol was derived for the coupling energy between Arg and Asp from a double mutant cycle analysis. Despite the radical nature of these mutations, they do not appear to alter the pathway of folding. The interaction between Arg69 and Asp93, located in a relatively conserved region among ribonucleases, is predominantly formed in the major transition state along the folding pathway, as found previously from an analysis of more benign mutations; the value of Phi(F) for all mutations at positions 69 and 93 are 0.8-0.9 in the major transition state for folding (where Phi(F) = 0 = fully unfolded and Phi(F) = 1 fully folded interaction energies). In contrast, the interaction between Arg83 and Asp75 in the active site of barnase is formed only in the native state of the protein. The analysis of folding pathways and the structure of folding intermediates by making kinetic and thermodynamic measurements on mutants appears even more robust than expected.
机译:已通过蛋白质工程,动力学和热力学研究分析了barnase中两个埋藏的盐桥在折叠状态,展开的主要过渡状态和折叠中间体的稳定性中的重要性。 Arg69-Asp93和Arg83-Asp75桥中的天冬氨酸残基被等位性类似物天冬酰胺取代,同时探查了各种替代品以寻找带正电荷的精氨酸伴侣。突变非常不稳定,将稳定性降低了5.4 kcal / mol。通过双重突变体循环分析得出Arg和Asp之间的偶合能为3.0-3.5 kcal / mol。尽管这些突变具有根本性质,但它们似乎并未改变折叠途径。 Arg69和Asp93之间的相互作用位于核糖核酸酶中相对保守的区域,主要沿折叠途径形成主要过渡状态,如先前从对更多良性突变的分析中发现的那样;在折叠的主要过渡状态下,位置69和93处所有突变的Phi(F)值均为0.8-0.9(其中Phi(F)= 0 =完全展开,Phi(F)= 1完全折叠的相互作用能)。相反,在barnase活性位点中Arg83和Asp75之间的相互作用仅在蛋白质的天然状态下形成。通过对突变体进行动力学和热力学测量,对折叠途径和折叠中间体结构的分析似乎比预期的更加可靠。

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