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Redrawing the Ramachandran plot after inclusion of hydrogen-bonding constraints

机译:包含氢键约束后重绘Ramachandran图

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摘要

A protein backbone has two degrees of conformational freedom per residue, described by its φ,ψ-angles. Accordingly, the energy landscape of a blocked peptide unit can be mapped in two dimensions, as shown by Ramachandran, Sasisekharan, and Ramakrish-nan almost half a century ago. With atoms approximated as hard spheres, the eponymous Ramachandran plot demonstrated that steric clashes alone eliminate 3/4 of φ,ψ-space, a result that has guided all subsequent work. Here, we show that adding hydrogen-bonding constraints to these steric criteria eliminates another substantial region of φ,ψ-space for a blocked peptide; for confor-mers within this region, an amide hydrogen is solvent-inaccessible, depriving it of a hydrogen-bonding partner. Yet, this "forbidden" region is well populated in folded proteins, which can provide longer-range intramolecular hydrogen-bond partners for these otherwise unsatisfied polar groups. Consequently, conformational space expands under folding conditions, a paradigm-shifting realization that prompts an experimentally verifiable conjecture about likely folding pathways.
机译:蛋白质骨架的每个残基具有两个构象自由度,以其φ,ψ角表示。因此,一个封闭的肽单元的能量分布图可以在两个维度上绘制,如Ramachandran,Sasisekharan和Ramakrish-nan在近半个世纪前所展示的那样。当原子近似为硬球体时,同名的拉马坎德兰图表明,仅空间碰撞消除了φ,ψ空间的3/4,这一结果指导了所有后续工作。在这里,我们表明将氢键约束添加到这些空间标准中,可以消除封闭肽段的另一个重要的φ,ψ空间区域。对于该区域内的缔合者来说,酰胺氢是溶剂不可接近的,从而剥夺了氢键伙伴。然而,该“禁止”区域在折叠的蛋白质中分布良好,可以为这些原本不满意的极性基团提供更长程的分子内氢键伙伴。因此,构象空间在折叠条件下扩展,这是范式转变的实现,促使人们对可能的折叠路径进行了实验验证。

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