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Characterizing the Initial Encounter Complex in Cadherin Adhesion

机译:表征钙粘蛋白粘附的初始遭遇复合体

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Cadherins are Ca2+-dependent cell-cell adhesion proteins with an extracellular region of five domains (EC1 to EC5). Adhesion is mediated by "strand swapping" of a conserved tryptophan residue in position 2 between EC1 domains of opposing cadherins, but the formation of this structure is not well understood. Using single-molecule fluorescence resonance energy transfer and single-molecule force measurements with the atomic force microscope, we demonstrate that cadherins initially interact via EC1 domains without swapping tryptophan-2 to form a weak Ca2+ dependent initial encounter complex that has 25% of the bond strength of a strand-swapped dimer. We suggest that cadherin dimerization proceeds via an induced fit mechanism where the monomers first form a tryptophan-2 independent initial encounter complex and then undergo subsequent conformational changes to form the final strand-swapped dimer.
机译:钙黏着蛋白是具有5个域(EC1至EC5)的细胞外区域的Ca2 +依赖性细胞-细胞粘附蛋白。粘附是通过相对的钙粘着蛋白的EC1域之间2位保守的色氨酸残基的“链交换”来介导的,但这种结构的形成尚不清楚。使用单分子荧光共振能量转移和原子力显微镜进行单分子力测量,我们证明钙粘着蛋白最初通过EC1域相互作用,而没有交换色氨酸2形成具有25%键的弱Ca2 +依赖性初始encounter杂物交换链二聚体的强度。我们建议,钙粘着蛋白二聚化通过诱导的拟合机制进行,其中单体首先形成独立于色氨酸2的初始初始配合物,然后经历随后的构象变化以形成最终的链交换二聚体。

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