首页> 外文期刊>Proceedings of the National Academy of Sciences of the United States of America >Trans-bonded pairs of E-cadherin exhibit a remarkable hierarchy of mechanical strengths.
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Trans-bonded pairs of E-cadherin exhibit a remarkable hierarchy of mechanical strengths.

机译:E-钙粘着蛋白的跨键对表现出显着的机械强度等级。

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Classical cadherins are primary mediators of calcium-dependent cell interactions in multicellular organisms. Organized in five tandemly repeated E-cadherin (EC) modules, the extracellular segments of these membrane-spanning glycoproteins interact homophilically between opposing cells to create highly regulated patterns of attachment stabilized by cytoskeletal elements inside the cells. Despite many structural and functional studies, a significant controversy exists in regard to the organization of cadherin binding in adhesion sites. Supported by considerable evidence, perhaps the most widely held view is that opposing N-terminal EC1-EC2 (EC12) domains form a "zipper" of bonds. However, immobilized on two atomically smooth surfaces and pushed to adhesive contact, opposing cadherins become fully interdigitated and unbind through three discrete jumps comparable with domain dimensions when pulled apart. So the question remains as to whether mechanical adhesion strength emanates solely from interactions between the peripheral N-terminal domains or involves multiple overlapping domains. It is also unclear whether a primary adhesion complex is formed by a single opposing pair of cadherins or whether the complex involves a more complicated network of cis-bonded multimers. To address these questions, we used a special jump/ramp mode of force spectroscopy to test isolated pairwise interactions between recombinant fragments of ECs. Besides the formation of strong trans-bonded dimers, we find a remarkable hierarchy of rupture strengths for bonds between the full five-domain fragments that suggests multiple mechanical functions for cadherins, perhaps providing distinct properties needed for transient-specific recognition as well as stable tissue formation.
机译:经典钙粘蛋白是多细胞生物中钙依赖性细胞相互作用的主要介质。这些跨膜糖蛋白的细胞外片段由五个串联重复的E-钙粘蛋白(EC)模块组成,在相对的细胞之间同质地相互作用,从而形成由细胞内的细胞骨架元素稳定的高度受控的附着模式。尽管进行了许多结构和功能研究,但关于粘附位点钙粘蛋白结合的组织仍存在重大争议。有大量证据支持,也许最广泛的观点是相对的N端EC1-EC2(EC12)域形成了一个“拉链”键。但是,相对的钙粘着蛋白固定在两个原子上光滑的表面上并推动与胶粘剂接触,它们被拉开时,与域尺寸相当,通过三个离散的跃迁而完全相互交叉并脱开结合。因此,关于机械粘合强度是仅由外围N端结构域之间的相互作用产生还是涉及多个重叠结构域的问题仍然存在。还不清楚主要的粘附复合物是由一对相对的钙黏着蛋白形成的,还是复合物是否包含更复杂的顺式键合多聚体网络。为了解决这些问题,我们使用了一种特殊的力谱跳跃/斜坡模式来测试EC重组片段之间的孤立的成对相互作用。除了形成强大的反键二聚体以外,我们发现完整的五结构域片段之间键的断裂强度具有显着的分级,表明钙黏着蛋白具有多种机械功能,也许可以提供瞬时特异性识别以及稳定组织所需的独特特性编队。

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