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Fundamental processes of protein folding: Measuring the energetic balance between helix formation and hydrophobic interactions

机译:蛋白质折叠的基本过程:测量螺旋形成和疏水相互作用之间的能量平衡

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摘要

Theories of protein folding often consider contributions from three fundamental elements: loops, hydrophobic interactions, and secondary structures. The pathway of protein folding, the rate of folding, and the final folded structure should be predictable if the energetic contributions to folding of these fundamental factors were properly understood. αtα is a helix-turn-helix peptide that was developed by de novo design to provide a model system for the study of these important elements of protein folding. Hydrogen exchange experiments were performed on selectively 15N-labeled αtα and used to calculate the stability of hydrogen bonds within the peptide. The resulting pattern of hydrogen bond stability was analyzed using a version of Lifson-Roig model that was extended to include a statistical parameter for tertiary interactions. This parameter, x, represents the additional statistical weight conferred upon a helical state by a tertiary contact. The hydrogen exchange data is most closely fit by the XHC model with an x parameter of 9.25. Thus the statistical weight of a hydrophobic tertiary contact is ∼5.8× the statistical weight for helix formation by alanine. The value for the x parameter derived from this study should provide a basis for the understanding of the relationship between hydrophobic cluster formation and secondary structure formation during the early stages of protein folding.
机译:蛋白质折叠理论通常考虑以下三个基本要素的贡献:环,疏水相互作用和二级结构。如果正确理解了这些基本因素对折叠的能量贡献,则蛋白质折叠的路径,折叠的速率和最终的折叠结构应该是可预测的。 αtα是一种由新设计开发的螺旋-转-螺旋肽,为研究蛋白质折叠的这些重要元素提供了模型系统。在选择性 15 N标记的αtα上进行了氢交换实验,并用于计算肽中氢键的稳定性。使用版本扩展的Lifson-Roig模型分析了氢键稳定性的最终模式,该模型已扩展为包括用于三次相互作用的统计参数。该参数x表示第三接触赋予螺旋状态的附加统计权重。 XHC模型最适合拟合氢交换数据,x参数为9.25。因此,疏水性叔接触的统计重量约为丙氨酸形成螺旋的统计重量的5.8倍。这项研究得出的x参数值应为理解蛋白质折叠初期疏水簇形成与二级结构形成之间的关系提供基础。

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