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首页> 外文期刊>Angewandte Chemie >A Single Stereodynamic Center Modulates the Rate of Self-Assembly in a Biomolecular System
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A Single Stereodynamic Center Modulates the Rate of Self-Assembly in a Biomolecular System

机译:单个立体动力学中心调节生物分子系统中自组装的速率。

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摘要

Chirality is a property of asymmetry important to both physical and abstract systems. Understanding how molecular systems respond to perturbations in their chiral building blocks can provide insight into diverse areas such as biomolecular self-assembly, protein folding, drug design, materials, and catalysis. Despite the fundamental importance of stereochemical preorganization in nature and designed materials, the ramifications of replacing chiral centers with stereodynamic atomic mimics in the context of biomolecular systems is unknown. Herein, we demonstrate that replacement of a single amino acid stereocenter with a stereodynamic nitrogen atom has profound consequences on the self-assembly of a biomolecular system. Our results provide insight into how the fundamental biopolymers of life would behave if their chiral centers were not configurationally stable, highlighting the vital importance of stereochemistry as a pre-organizing element in biomolecular folding and assembly events.
机译:手性是对物理系统和抽象系统都重要的不对称性。了解分子系统如何响应其手性结构单元中的扰动可以提供对生物分子自组装,蛋白质折叠,药物设计,材料和催化等各个领域的了解。尽管立体化学预组织在自然界和设计的材料中具有根本的重要性,但是在生物分子系统的背景下用立体动力学原子模拟物取代手性中心的后果尚不明确。在本文中,我们证明了用立体动力学的氮原子取代单个氨基酸的立体中心对生物分子系统的自组装具有深远的影响。我们的结果提供了对生命的基本生物聚合物,如果它们的手性中心在构型上不稳定的表现方式的深刻见解,突出了立体化学作为生物分子折叠和组装事件中的预组织元素的至关重要。

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