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The effect of the polyproline II (PPII) conformation on the denatured state entropy

机译:聚脯氨酸II(PPII)构象对变性态熵的影响

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摘要

Polyproline II (PPII) is reported to be a dominant conformation in the unfolded state of peptides, even when no prolines are present in the sequence. Here we use isothermal titration calorimetry (ITC) to investigate the PPII bias in the unfolded state by studying the binding of the SH3 domain of SEM-5 to variants of its putative PPII peptide ligand, Sos. The experimental system is unique in that it provides direct access to the conformational entropy change of the substituted amino acids. Results indicate that the denatured ensemble can be characterized by at least two thermodynamically distinct states, the PPII conformation and an unfolded state conforming to the previously held idea of the denatured state as a random collection of conformations determined largely by hard-sphere collision. The probability of the PPII conformation in the denatured states for Ala and Gly were found to be significant, ∼30% and ∼10%, respectively, resulting in a dramatic reduction in the conformational entropy of folding.
机译:据报道,即使在序列中不存在脯氨酸的情况下,聚脯氨酸II(PPII)在肽的未折叠状态也是一种主要构象。在这里,我们通过等温滴定热法(ITC)通过研究SEM-5的SH3结构域与其推定的PPII肽配体Sos的变体的结合来研究未折叠状态下的PPII偏倚。该实验系统的独特之处在于,它可以直接访问取代氨基酸的构象熵变化。结果表明,变性集合体可以通过至少两个热力学上不同的状态来表征,PPII构象和未折叠状态符合先前持有的变性状态的思想,即构象的随机集合主要由硬球碰撞确定。发现在Ala和Gly变性状态下PPII构象的概率显着,分别为〜30%和〜10%,从而导致折叠的构象熵显着降低。

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