Oncology program, Institute for Research in Biomedicine, Baldiri Reixac 10, 08028 Barcelona, Spain.
Nat Cell Biol. 2011 Jul 31;13(9):1100-7. doi: 10.1038/ncb2298.
The formation and maintenance of complex organs requires segregation of distinct cell populations into defined territories (that is, cell sorting) and the establishment of boundaries between them. Here we have investigated the mechanism by which Eph/ephrin signalling controls the compartmentalization of cells in epithelial tissues. We show that EphB/ephrin-B signalling in epithelial cells regulates the formation of E-cadherin-based adhesions. EphB receptors interact with E-cadherin and with the metalloproteinase ADAM10 at sites of adhesion and their activation induces shedding of E-cadherin by ADAM10 at interfaces with ephrin-B1-expressing cells. This process results in asymmetric localization of E-cadherin and, as a consequence, in differences in cell affinity between EphB-positive and ephrin-B-positive cells. Furthermore, genetic inhibition of ADAM10 activity in the intestine of mice results in a lack of compartmentalization of Paneth cells within the crypt stem cell niche, a defect that phenocopies that of EphB3-null mice. These results provide important insights into the regulation of cell migration in the intestinal epithelium and may help in the understanding of the nature of the cell sorting process in other epithelial tissues where Eph-ephrin interactions play a central role.
复杂器官的形成和维持需要将不同的细胞群体分隔到特定的区域(即细胞分类),并在它们之间建立边界。在这里,我们研究了 Eph/ephrin 信号如何控制上皮组织中细胞的分隔。我们表明,上皮细胞中的 EphB/ephrin-B 信号调节基于 E-cadherin 的黏附的形成。EphB 受体与 E-cadherin 和位于黏附部位的金属蛋白酶 ADAM10 相互作用,其激活诱导 ADAM10 在与表达 Ephrin-B1 的细胞的界面处脱落 E-cadherin。这个过程导致 E-cadherin 的不对称定位,并且,因此,EphB 阳性细胞和 Ephrin-B 阳性细胞之间的细胞亲和力存在差异。此外,在小鼠的肠道中抑制 ADAM10 的遗传活性会导致 Paneth 细胞在隐窝干细胞龛内缺乏分隔,这一缺陷类似于 EphB3 缺失型小鼠的缺陷。这些结果为肠道上皮细胞迁移的调节提供了重要的见解,并可能有助于理解 Eph-ephrin 相互作用发挥核心作用的其他上皮组织中的细胞分类过程的性质。