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Detection of streptavidin–biotin intermediate metastable states at the single-molecule level using high temporal-resolution atomic force microscopy

机译:使用高时间分辨率原子力显微镜在单分子水平上检测链霉亲和素-生物素的中间亚稳态

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Although the streptavidin–biotin intermolecular bond has been extensively used in many applications due to its high binding affinity, its exact nature and interaction mechanism have not been well understood. Several reports from previous studies gave a wide range of results in terms of the system's energy potential landscape because of bypassing some short-lived states in the detection process. We employed a quasi-static process of slowly loading force onto the bond (loading rate = 20 pN s ~(?1) ) to minimize the force-induced disruption and to provide a chance to explore the system in near-equilibrium. Therein, by utilizing a fast sampling rate for the detection of force by atomic force microscopy (20 μs per data point), several transient states of the system were clearly resolved in our force spectroscopy measurements. These key strategies allow the determination of the states' relative positions and free energy levels along the pulling reaction coordinate for the illustration of an energy landscape of the system.
机译:尽管链亲和素-生物素的分子间键由于具有高结合亲和力而被广泛用于许多应用中,但其确切的性质和相互作用机理尚未得到很好的理解。由于在检测过程中绕过了一些短暂的状态,以前的研究的一些报告就系统的能量势态而言给出了广泛的结果。我们采用准静态过程将力缓慢加载到键上(加载速率= 20 pN s〜(?1)),以最大程度地减小由力引起的破坏,并为在接近平衡时探索系统提供机会。其中,通过利用快速采样率通过原子力显微镜(每个数据点20 s)检测力,在我们的力谱测量中清楚地解决了系统的几个瞬态。这些关键策略允许确定沿拉动反应坐标的状态的相对位置和自由能级,以说明系统的能量格局。

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