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Hydrogen bonding in the triple-helix

机译:三螺旋中的氢键

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The increased level of detail obtained from high resolution crystal structures of triple-helical peptides and the residue specific properties that can be defined by NMR studies on 15N-enriched peptides has given new information on hydrogen bonding in the triple-helix. In particular, it has given details about the principle originally posed by Ramachandran to try to maximize the hydrogen bonding in the collagen triple-helical structure in the face of the lack of direct favorable interactions. Now it can be seen that by the participation of water, and by the summation of many weak hydrogen bonding patterns, the structure is largely stabilized through hydrogen bonding, as indicated by calonmetry. The CaH...O=C hydrogen bonds, the water mediated NH...CO bonds, and the hydroxyproline-water hydrogen bonds proposed by Ramachandran have been visualized and now defined in the triple-helix.
机译:从三螺旋肽的高分辨率晶体结构获得的详细程度的提高以及可以通过NMR研究富含15N的肽确定的残基特异性,为三螺旋中的氢键提供了新的信息。尤其是,它给出了有关Ramachandran最初提出的原理的详细信息,该原理是在缺乏直接的有利相互作用的情况下试图使胶原三螺旋结构中的氢键最大化。现在可以看出,通过水的参与,以及许多弱氢键合模的总和,通过量热法表明,该结构通过氢键在很大程度上得以稳定。由Ramachandran提出的CaH ... O = C氢键,水介导的NH ... CO键和羟脯氨酸-水氢键已经可视化,现在定义为三螺旋。

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