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首页> 外文期刊>European journal of organic chemistry >Foldameric β-H18/20_P mixed helix stabilized by head-to-tail contacts: A way to higher-order structures
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Foldameric β-H18/20_P mixed helix stabilized by head-to-tail contacts: A way to higher-order structures

机译:头尾接触稳定的折叠型β-H18/ 20_P混合螺旋:高阶结构的一种方法

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摘要

Peptidic foldamers are known to exhibit increased diversity in the periodic secondary-structure space in comparison with their natural counterparts, but their higher-order self-organization has been studied less thoroughly. In theory, large-diameter peptide foldamer helices have the capability of self-recognition through axial helix-helix interactions (e.g., head-to-tail), but this phenomenon has previously been observed in only one instance. In this article we report on the discovery of the largest-diameter β-peptidic mixed helix to date, the H18/20_P helix. Its formation is solvent-dependent and its folding occurs cooperatively through head-to-tail self-assembly in solution. These findings suggest that axial helix-helix interactions can serve as a new mode for the formation of tertiary/quaternary structures for peptide foldamers, which also show higher-order structural diversity than natural proteins.
机译:已知肽折叠子与天然折叠子相比在周期性二级结构空间中显示出更高的多样性,但是对它们的高阶自组织的研究还不够深入。从理论上讲,大直径的肽折叠螺旋具有通过轴向螺旋-螺旋相互作用(例如,从头到尾)的自我识别的能力,但是这种现象以前仅在一种情况下被观察到。在本文中,我们报告了迄今为止最大直径的β-肽混合螺旋H18 / 20_P螺旋的发现。其形成取决于溶剂,并且其折叠通过溶液中头尾自组装而协同发生。这些发现表明,轴向螺旋-螺旋相互作用可以作为肽折叠子三级/四级结构形成的新模式,与天然蛋白质相比,三级/四级结构还显示出更高阶的结构多样性。

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