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Polyproline II helical structure in protein unfolded states: Lysine peptides revisited

机译:蛋白质未折叠状态下的脯氨酸II螺旋结构:重新研究赖氨酸肽

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摘要

The left-handed polyproline II (PPII) helix gives rise to a circular dichroism spectrum that is remarkably similar to that of unfolded proteins. This similarity has been used as the basis for the hypothesis that unfolded proteins possess considerable PPII helical content. It has long been known that homopolymers of lysine adopt the PPII helical conformation at neutral pH, presumably a result of electrostatic repulsion between side chains. It is shown here that a seven-residue lysine peptide also adopts the PPII conformation. In contrast with homopolymers of lysine, this short peptide is shown to retain PPII helical character under conditions in which side-chain charges are heavily screened or even neutralized. The most plausible explanation for these observations is that the peptide backbone favors the PPII conformation to maximize favorable interactions with solvent. These data are evidence that unfolded proteins do indeed possess PPII content, indicating that the ensemble of unfolded states is significantly smaller than is commonly assumed.
机译:左旋的脯氨酸II(PPII)螺旋产生一个圆二色性光谱,该光谱与未折叠的蛋白非常相似。这种相似性已被用作未折叠蛋白具有大量PPII螺旋​​含量的假说的基础。长期以来,人们知道赖氨酸的均聚物在中性pH值下呈PPII螺旋​​构象,这大概是侧链之间静电排斥的结果。此处显示七个残基的赖氨酸肽也采用PPII构象。与赖氨酸的均聚物相反,该短肽显示出在侧链电荷被大量筛选甚至被中和的条件下保留PPII螺旋​​特性。这些观察结果最合理的解释是,肽主链有利于PPII构象,以最大化与溶剂的有利相互作用。这些数据证明未折叠的蛋白质确实具有PPII含量,这表明未折叠状态的集合显着小于通常的假设。

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