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Force Measurements of the α5β1 Integrin–Fibronectin Interaction

机译:α5β1整合素-纤连蛋白相互作用的力测量

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摘要

The interaction of the α5β1 integrin and its ligand, fibronectin (FN), plays a crucial role in the adhesion of cells to the extracellular matrix. An important intrinsic property of the α5β1/FN interaction is the dynamic response of the complex to a pulling force. We have carried out atomic force microscopy measurements of the interaction between α5β1 and a fibronectin fragment derived from the seventh through tenth type III repeats of FN (i.e., FN7-10) containing both the arg-gly-asp (RGD) sequence and the synergy site. Direct force measurements obtained from an experimental system consisting of an α5β1 expressing K562 cell attached to the atomic force microscopy cantilever and FN7-10 adsorbed on a substrate were used to determine the dynamic response of the α5β1/FN7-10 complex to a pulling force. The experiments were carried out over a three-orders-of-magnitude change in loading rate and under conditions that allowed for detection of individual α5β1/FN7-10 interactions. The dynamic rupture force of the α5β1/FN7-10 complex revealed two regimes of loading: a fast loading regime (>10,000 pN/s) and a slow loading regime (<10,000 pN/s) that characterize the inner and outer activation barriers of the complex, respectively. Activation by TS2/16 antibody increased both the frequency of adhesion and elevated the rupture force of the α5β1/wild type FN7-10 complex to higher values in the slow loading regime. In experiments carried out with a FN7-10 RGD deleted mutant, the force measurements revealed that both inner and outer activation barriers were suppressed by the mutation. Mutations to the synergy site of FN, however, suppressed only the outer barrier activation of the complex. For both the RGD and synergy deletions, the frequency of adhesion was less than that of the wild type FN7-10, but was increased by integrin activation. The rupture force of these mutants was only slightly less than that of the wild type, and was not increased by activation. These results suggest that integrin activation involved a cooperative interaction with both the RGD and synergy sites.
机译:α5β1整联蛋白与其配体纤连蛋白(FN)的相互作用在细胞与细胞外基质的粘附中起着至关重要的作用。 α5β1/ FN相互作用的重要内在性质是复合物对拉力的动态响应。我们已经进行了原子力显微镜测量,测量了α5β1与纤连蛋白片段之间的相互作用,所述纤连蛋白片段来自同时包含arg-gly-asp(RGD)序列和协同作用的FN的第七至第十种III型重复序列(即FN7-10)现场。从实验系统获得的直接力测量结果用于确定α5β1/ FN7-10复合物对拉力的动态响应,该实验系统由附着于原子力显微镜悬臂的表达α5β1的K562细胞和吸附在基质上的FN7-10组成。在允许检测单个α5β1/ FN7-10相互作用的条件下,在加载速率的三个数量级变化上进行了实验。 α5β1/ FN7-10复合物的动态断裂力揭示了两种加载方式:快速加载方式(> 10,000 pN / s)和慢速加载方式(<10,000 pN / s),它们表征了内在和外在激活屏障复杂。 TS2 / 16抗体的激活既增加了粘附的频率,又使α5β1/野生型FN7-10复合物的断裂力在缓慢加载方案中提高到更高的值。在用FN7-10 RGD缺失突变体进行的实验中,力的测量结果表明,该突变抑制了内部和外部激活屏障。但是,FN协同位点的突变仅抑制了复合物的外部屏障激活。对于RGD和协同作用缺失,粘附的频率均小于野生型FN7-10的粘附频率,但是由于整联蛋白激活而增加。这些突变体的断裂力仅略低于野生型,并且不会因激活而增加。这些结果表明整联蛋白活化涉及与RGD和协同位点的合作相互作用。

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