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Rational Design of Protein Stability: Effect of (2S4R)-4-Fluoroproline on the Stability and Folding Pathway of Ubiquitin

机译:蛋白质稳定性的合理设计:(2S4R)-4-氟脯氨酸对泛素稳定性和折叠途径的影响

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摘要

BackgroundMany strategies have been employed to increase the conformational stability of proteins. The use of 4-substituted proline analogs capable to induce pre-organization in target proteins is an attractive tool to deliver an additional conformational stability without perturbing the overall protein structure. Both, peptides and proteins containing 4-fluorinated proline derivatives can be stabilized by forcing the pyrrolidine ring in its favored puckering conformation. The fluorinated pyrrolidine rings of proline can preferably stabilize either a Cγ-exo or a Cγ-endo ring pucker in dependence of proline chirality (4R/4S) in a complex protein structure. To examine whether this rational strategy can be generally used for protein stabilization, we have chosen human ubiquitin as a model protein which contains three proline residues displaying Cγ-exo puckering.
机译:背景技术已经采用了许多策略来增加蛋白质的构象稳定性。使用能够在靶蛋白中诱导预组织的4-取代的脯氨酸类似物是一种引人注目的工具,可提供额外的构象稳定性,而不会干扰整体蛋白结构。含有4-氟脯氨酸衍生物的肽和蛋白质都可以通过迫使吡咯烷环形成有利的折叠构象来稳定。脯氨酸的氟化吡咯烷环可以根据络合物中脯氨酸的手性(4R / 4S)稳定C γ -exo或C γ -endo环蛋白质结构。为了检查这种合理的策略是否可以普遍用于蛋白质稳定,我们选择了人类泛素作为模型蛋白,其中包含三个显示C γ -exo折叠的脯氨酸残基。

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