首页> 外文期刊>Journal of cell biology >Cross Talk between Adhesion Molecules: Control of N-cadherin Activity by Intracellular Signals Elicited by β1 and β3 Integrins in Migrating Neural Crest Cells
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Cross Talk between Adhesion Molecules: Control of N-cadherin Activity by Intracellular Signals Elicited by β1 and β3 Integrins in Migrating Neural Crest Cells

机译:粘附分子之间的串扰:迁移神经C细胞中β1和β3整合素引起的细胞内信号控制N-钙黏着蛋白活性。

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During embryonic development, cell migration and cell differentiation are associated with dynamic modulations both in time and space of the repertoire and function of adhesion receptors, but the nature of the mechanisms responsible for their coordinated occurrence remains to be elucidated. Thus, migrating neural crest cells adhere to fibronectin in an integrin-dependent manner while maintaining reduced N-cadherin–mediated intercellular contacts. In the present study we provide evidence that, in these cells, the control of N-cadherin may rely directly on the activity of integrins involved in the process of cell motion. Prevention of neural crest cell migration using RGD peptides or antibodies to fibronectin and to β1 and β3 integrins caused rapid N-cadherin–mediated cell clustering. Restoration of stable intercellular contacts resulted essentially from the recruitment of an intracellular pool of N-cadherin molecules that accumulated into adherens junctions in tight association with the cytoskeleton and not from the redistribution of a preexisting pool of surface N-cadherin molecules. In addition, agents that cause elevation of intracellular Ca2+ after entry across the plasma membrane were potent inhibitors of cell aggregation and reduced the N-cadherin– mediated junctions in the cells. Finally, elevated serine/ threonine phosphorylation of catenins associated with N-cadherin accompanied the restoration of intercellular contacts. These results indicate that, in migrating neural crest cells, β1 and β3 integrins are at the origin of a cascade of signaling events that involve transmembrane Ca2+ fluxes, followed by activation of phosphatases and kinases, and that ultimately control the surface distribution and activity of N-cadherin. Such a direct coupling between adhesion receptors by means of intracellular signals may be significant for the coordinated interplay between cell–cell and cell–substratum adhesion that occurs during embryonic development, in wound healing, and during tumor invasion and metastasis.
机译:在胚胎发育过程中,细胞迁移和细胞分化与库的时间和空间以及粘附受体功能的动态调节有关,但是导致其协调发生的机制的性质尚待阐明。因此,迁移的神经c细胞以整合素依赖性方式粘附于纤连蛋白,同时保持减少的N-钙粘蛋白介导的细胞间接触。在本研究中,我们提供证据表明,在这些细胞中,对N-钙粘蛋白的控制可能直接依赖于参与细胞运动过程的整联蛋白的活性。使用RGD肽或抗纤连蛋白以及β1和β3整合素的抗体预防神经rest细胞迁移会导致N-钙粘蛋白介导的细胞快速聚集。稳定的细胞间接触的恢复主要是由于募集了细胞内的N-钙粘蛋白分子池,该池积累了与细胞骨架紧密结合的粘附连接,而不是由于表面N-钙粘蛋白分子池的重新分布。此外,穿过细胞膜进入细胞内引起Ca2 +升高的药物是有效的细胞聚集抑制剂,并减少了N-钙粘蛋白介导的细胞连接。最后,与N-钙粘着蛋白相关的连环蛋白丝氨酸/苏氨酸磷酸化水平升高,伴随着细胞间接触的恢复。这些结果表明,在神经neural细胞的迁移中,β1和β3整合素位于一系列信号事件的起点,这些信号事件涉及跨膜Ca2 +通量,随后激活磷酸酶和激酶,并最终控制了N的表面分布和活性。 -钙黏着蛋白。粘附受体之间通过细胞内信号的这种直接偶联对于在胚胎发育,伤口愈合以及肿瘤侵袭和转移过程中发生的细胞间粘附和细胞基质粘附之间的协同相互作用可能是重要的。

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