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A unique interplay between Rap1 and E-cadherin in the endocytic pathway regulates self-renewal of human embryonic stem cells.

机译:Rap1和E-钙粘着蛋白在内吞途径之间的独特相互作用调节人类胚胎干细胞的自我更新。

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Regulatory mechanisms pertaining to the self-renewal of stem cells remain incompletely understood. Here, we show that functional interactions between small GTPase Rap1 and the adhesion molecule E-cadherin uniquely regulate the self-renewal of human embryonic stem cells (hESCs). Inhibition of Rap1 suppresses colony formation and self-renewal of hESCs, whereas overexpression of Rap1 augments hESC clonogenicity. Rap1 does not directly influence the expression of the pluripotency genes Oct4 and Nanog. Instead, it affects the endocytic recycling pathway involved in the formation and maintenance of E-cadherin-mediated cell-cell cohesion, which is essential for the colony formation and self-renewal of hESCs. Conversely, distinct from epithelial cells, disruption of E-cadherin mediated cell-cell adhesions induces lysosome delivery and degradation of Rap1. This in turn leads to a further downregulation of E-cadherin function and a subsequent reduction in hESC clonogenic capacity. These findings provide the first demonstration that the interplay between Rap1 and E-cadherin along the endocytic recycling pathway serves as a timely and efficient mechanism to regulate hESC self-renewal. Given the availability of specific activators for Rap1, this work provides a new perspective to enable better maintenance of human pluripotent stem cells.
机译:关于干细胞自我更新的调控机制仍未完全了解。在这里,我们表明小GTPase Rap1和粘附分子E-钙粘着蛋白之间的功能相互作用唯一调节人类胚胎干细胞(hESCs)的自我更新。抑制Rap1抑制hESCs的菌落形成和自我更新,而Rap1的过表达增强hESC的克隆形成性。 Rap1不会直接影响多能基因Oct4和Nanog的表达。相反,它会影响参与E-钙粘蛋白介导的细胞-细胞凝聚力形成和维持的内吞再循环途径,这对于hESCs的菌落形成和自我更新至关重要。相反,与上皮细胞不同,E-钙黏着蛋白介导的细胞-细胞粘附的破坏诱导溶酶体传递和Rap1降解。这继而导致E-钙粘蛋白功能的进一步下调和随后的hESC克隆形成能力的降低。这些发现提供了第一个证明,Rap1和E-钙粘着蛋白之间沿着内吞再循环途径的相互作用是调节hESC自我更新的及时有效的机制。考虑到Rap1特定激活剂的可用性,这项工作提供了一个新的视角,使人们能够更好地维持人类多能干细胞。

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