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Effects of multiple-bond ruptures on kinetic parameters extracted from force spectroscopy measurements: Revisiting biotin-streptavidin interactions

机译:多键断裂对从力谱测量中提取的动力学参数的影响:重新研究生物素-链霉亲和素的相互作用

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摘要

Force spectroscopy measurements of the rupture of the molecular bond between biotin and streptavidin often results in a wide distribution of rupture forces. We attribute the long tail of high rupture forces to the nearly simultaneous rupture of more than one molecular bond. To decrease the number of possible bonds, we employed hydrophilic polymeric tethers to attach biotin molecules to the atomic force microscope probe. It is shown that the measured distributions of rupture forces still contain high forces that cannot be described by the forced dissociation from a deep potential well. We employed a recently developed analytical model of simultaneous rupture of two bonds connected by polymer tethers with uneven length to fit the measured distributions. The resulting kinetic parameters agree with the energy landscape predicted by molecular dynamics simulations. It is demonstrated that when more than one molecular bond might rupture during the pulling measurements there is a noise-limited range of probe velocities where the kinetic parameters measured by force spectroscopy correspond to the true energy landscape. Outside this range of velocities, the kinetic parameters extracted by using the standard most probable force approach might be interpreted as artificial energy barriers that are not present in the actual energy landscape. Factors that affect the range of useful velocities are discussed.
机译:力谱法测量生物素与链霉亲和素之间分子键的断裂通常会导致断裂力的广泛分布。我们将高断裂力的长尾巴归因于多个分子键几乎同时断裂。为了减少可能的键数,我们采用了亲水性聚合物束缚剂,将生物素分子连接到原子力显微镜探针上。结果表明,测得的破裂力分布仍然包含高力,这无法通过从深势阱中的强解离来描述。我们采用了最近开发的分析模型,该模型同时通过长度不均匀的聚合物链连接的两个键同时断裂,以适应所测得的分布。产生的动力学参数与分子动力学模拟预测的能量分布相符。结果表明,当在拉力测量过程中一个以上的分子键可能断裂时,存在一个有限的探针速度范围,其中力谱测量的动力学参数对应于真实的能量分布。在此速度范围之外,通过使用标准的最可能的力方法提取的动力学参数可能被解释为实际的能源格局中不存在的人工能垒。讨论了影响有用速度范围的因素。

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