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首页> 外文期刊>Angewandte Chemie >Inherent Conformational Preferences of Ac-Gln-Gln-NHBn: Sidechain Hydrogen Bonding Supports a beta-Turn in the Gas Phase
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Inherent Conformational Preferences of Ac-Gln-Gln-NHBn: Sidechain Hydrogen Bonding Supports a beta-Turn in the Gas Phase

机译:AC-GLN-GLN-NHBN的固有构象偏好:SIDECHAIN氢键在气相中支持β-转弯

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摘要

Gas-phase single-conformation spectroscopy is used to study Ac-Gln-Gln-NHBn in order to probe the interplay between sidechain hydrogen bonding and backbone conformational preferences. This small, amide-rich peptide offers many possibilities for backbone-backbone, sidechain-backbone, and sidechain-sidechain interactions. The major conformer observed experimentally features a type-I b-turn with a canonical 10-membered ring C=O-H-N hydrogen bond between backbone amide groups. In addition, the C=O group of each Gln sidechain participates in a seven-membered ring hydrogen bond with the backbone NH of the same residue. Thus, sidechain hydrogen-bonding potential is satisfied in a manner that is consistent with and stabilizes the b-turn secondary structure. This turn-forming propensity may be relevant to pathogenic amyloid formation by polyglutamine segments in human proteins.
机译:气相单构象光谱用于研究AC-GLN-GLN-NHBN,以便探测侧桥氢键与骨干构象偏好之间的相互作用。 这种小酰胺丰富的肽为骨干 - 骨干,侧网骨干和侧网侧桥互动提供了许多可能性。 所观察到的主要符合特者通过在骨架酰胺基团之间具有规范的10元环C = O-H-N氢键的型I B-转。 另外,每个GLN Sifechain的C = O基团与相同残余物的骨干NH一起参与七元环氢键。 因此,以一致的方式满足侧边氢键合电位并稳定B转二次结构。 这种转弯倾向可能与人蛋白中的聚谷氨酰胺区段具有致病淀粉样蛋白形成。

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