JCI Insight. 2022 Sep 8;7(17):e158934. doi: 10.1172/jci.insight.158934.
Junctional adhesion molecule-A (JAM-A) is expressed in several cell types, including epithelial and endothelial cells, as well as some leukocytes. In intestinal epithelial cells (IEC), JAM-A localizes to cell junctions and plays a role in regulating barrier function. In vitro studies with model cell lines have shown that JAM-A contributes to IEC migration; however, in vivo studies investigating the role of JAM-A in cell migration-dependent processes such as mucosal wound repair have not been performed. In this study, we developed an inducible intestinal epithelial-specific JAM-A-knockdown mouse model (Jam-aERΔIEC). While acute induction of IEC-specific loss of JAM-A did not result in spontaneous colitis, such mice had significantly impaired mucosal healing after chemically induced colitis and after biopsy colonic wounding. In vitro primary cultures of JAM-A-deficient IEC demonstrated impaired migration in wound healing assays. Mechanistic studies revealed that JAM-A stabilizes formation of protein signaling complexes containing Rap1A/Talin/β1 integrin at focal adhesions of migrating IECs. Loss of JAM-A in primary IEC led to decreased Rap1A activity and protein levels of Talin and β1 integrin, and it led to a reduction in focal adhesion structures. These findings suggest that epithelial JAM-A plays a critical role in controlling mucosal repair in vivo through dynamic regulation of focal adhesions.
连接黏附分子-A(JAM-A)在多种细胞类型中表达,包括上皮细胞和内皮细胞,以及一些白细胞。在肠道上皮细胞(IEC)中,JAM-A 定位于细胞连接处,在调节屏障功能方面发挥作用。体外模型细胞系的研究表明,JAM-A 有助于 IEC 的迁移;然而,尚未进行体内研究调查 JAM-A 在细胞迁移依赖性过程(如黏膜伤口修复)中的作用。在这项研究中,我们开发了一种诱导型肠道上皮细胞特异性 JAM-A 敲低小鼠模型(Jam-aERΔIEC)。虽然急性诱导 IEC 特异性 JAM-A 缺失不会导致自发性结肠炎,但这些小鼠在化学诱导结肠炎和结肠活检损伤后,黏膜愈合明显受损。JAM-A 缺陷型 IEC 的体外原代培养显示在伤口愈合测定中迁移受损。机制研究表明,JAM-A 稳定形成含有 Rap1A/Talin/β1 整合素的蛋白质信号复合物,在迁移的 IEC 中的粘着斑处。原发性 IEC 中 JAM-A 的缺失导致 Rap1A 活性和 Talin 以及 β1 整合素的蛋白水平降低,并导致粘着斑结构减少。这些发现表明上皮 JAM-A 通过对粘着斑的动态调节,在体内控制黏膜修复中发挥关键作用。