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Side-Chain Conformational Preferences Govern Protein–Protein Interactions

机译:旁链构象偏好控制蛋白质与蛋白质的相互作用

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摘要

Protein secondary structures serve as geometrically constrained scaffolds for the display of key interacting residues at protein interfaces. Given the critical role of secondary structures in protein folding and the dependence of folding propensities on backbone dihedrals, secondary structure is expected to influence the identity of residues that are important for complex formation. Counter to this expectation, we find that a narrow set of residues dominates the binding energy in protein–protein complexes independent of backbone conformation. This finding suggests that the binding epitope may instead be substantially influenced by the side-chain conformations adopted. We analyzed side-chain conformational preferences in residues that contribute significantly to binding. This analysis suggests that preferred rotamers contribute directly to specificity in protein complex formation and provides guidelines for peptidomimetic inhibitor design.
机译:蛋白质二级结构可作为几何约束的支架,用于在蛋白质界面上显示关键相互作用的残基。考虑到二级结构在蛋白质折叠中的关键作用以及折叠倾向对骨架二面体的依赖性,预计二级结构会影响对复杂形成至关重要的残基的身份。与此期望相反,我们发现一小部分残基支配了蛋白质-蛋白质复合物中的结合能,而与骨架构象无关。该发现表明,结合表位可能实际上受到所采用的侧链构象的影响。我们分析了显着促进结合的残基中的侧链构象偏好。该分析表明,优选的旋转异构体直接有助于蛋白质复合物形成的特异性,并为拟肽抑制剂设计提供指导。

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