CEA, IBEB, Service de Biochimie et Toxicologie Nucléaire, F-30207 Bagnols sur Cèze, France.
J Mol Recognit. 2011 May-Jun;24(3):490-502. doi: 10.1002/jmr.1109.
Thanks to Dynamic Force Spectroscopy (DFS) and developments of massive data analysis tools, such as YieldFinder, Atomic Force Microscopy (AFM) becomes a powerful method for analyzing long lifetime ligand-receptor interactions. We have chosen the well-known system, (strept)avidin-biotin complex, as an experimental model due to the lack of consensus on interpretations of the rupture force spectrum (Walton et al., 2008). We present new measurements of force-displacement curves for the (strept)avidin-biotin complex. These data were analyzed using the YieldFinder software based on the Bell-Evans formalism. In addition, the Williams model was adopted to interpret the bonding state of the system. Our results indicate the presence of at least two energy barriers in two loading rate regimes. Combining with structural analysis, the energy barriers can be interpreted in a novel physico-chemical context as one inner barrier for H-bond ruptures ( <1 Å), and one outer barrier for escaping from the binding pocket which is blocked by the side chain of a symmetry-related Trp120 in the streptavidin tetramer. In each loading rate regime, the presence of multiple parallel bonds was implied by the Williams model. Interestingly, we found that in literature different terms created for addressing the apparent discrepancies in the results of avidin-biotin interactions can be reconciled by taking into account multiple parallel bonds.
得益于动态力谱学(DFS)和大规模数据分析工具的发展,如 YieldFinder,原子力显微镜(AFM)成为分析长寿命配体-受体相互作用的强大方法。由于对断裂力谱的解释缺乏共识(Walton 等人,2008),我们选择了著名的(链霉)亲和素-生物素复合物系统作为实验模型。我们提出了(链霉)亲和素-生物素复合物的力-位移曲线的新测量值。这些数据使用基于 Bell-Evans 形式主义的 YieldFinder 软件进行了分析。此外,采用了 Williams 模型来解释系统的键合状态。我们的结果表明,在两个加载速率范围内至少存在两个能量势垒。结合结构分析,可以将能量势垒在新颖的物理化学背景下解释为氢键断裂的一个内势垒(<1 Å),以及一个逃离结合口袋的外势垒,该口袋被链霉亲和素四聚体中一个对称相关的色氨酸 120 的侧链所阻挡。在每个加载速率范围内,Williams 模型暗示存在多个平行键。有趣的是,我们发现,在文献中,为了解决亲和素-生物素相互作用的结果中的明显差异而创造的不同术语,可以通过考虑多个平行键来协调。