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机械扭曲蛋白质受体降低了受体-配体键的寿命。

Mechanical distortion of protein receptor decreases the lifetime of a receptor-ligand bond.

机构信息

Department of Chemistry, Duke University, Durham, North Carolina 27708, USA.

出版信息

J Am Chem Soc. 2010 Jul 21;132(28):9681-7. doi: 10.1021/ja1011756.

Abstract

Substantial experimental evidence indicates that the mechanical force applied to pull apart non-covalent molecular bonds (such as receptor-ligand pairs) can significantly decrease the bond lifetime. This evidence is often generated in single-molecule experiments that are designed to specifically test effects of pulling forces. However, the effect of compressive forces on the lifetime of receptor-ligand bonds remains largely unexplored. Here we extend the common usage of the atomic force microscopy technique to study whether compressive forces applied to bound streptavidin-biotin species can significantly accelerate the rate of dissociation. Presented experimental data indicate that compressive forces can substantially decrease the lifetime of the molecular bond. Surprisingly, the efficiency of accelerating dissociation by compressive forces sometimes exceeds the enhancement of the dissociation rate measured in pulling experiments, indicating that compressive forces applied to the bound species might be efficiently used to control the lifetime of adhesion bonds.

摘要

大量实验证据表明,用于拉开非共价分子键(如受体-配体对)的机械力可以显著缩短键的寿命。这些证据通常来自于旨在专门测试拉力影响的单分子实验。然而,压缩力对受体-配体键寿命的影响在很大程度上仍未得到探索。在这里,我们扩展了原子力显微镜技术的常见用法,以研究施加于结合的链霉亲和素-生物素物种的压缩力是否可以显著加速解离速率。呈现的实验数据表明,压缩力可以显著缩短分子键的寿命。令人惊讶的是,压缩力加速解离的效率有时超过在拉力实验中测量到的解离速率的增强,表明施加于结合物种的压缩力可以有效地用于控制黏附键的寿命。

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