Kummer Daniel, Ebnet Klaus
Institute-Associated Research Group: Cell Adhesion and Cell Polarity, Institute of Medical Biochemistry, ZMBE, University of Münster, Von-Esmarch-Str. 56, D-48149 Münster, Germany.
Interdisciplinary Clinical Research Center (IZKF), University of Münster, D-48149 Münster, Germany.
Cells. 2018 Mar 26;7(4):25. doi: 10.3390/cells7040025.
Junctional adhesion molecules (JAMs) are cell surface adhesion receptors of the immunoglobulin superfamily. JAMs are involved in a variety of biological processes both in the adult organism but also during development. These include processes such as inflammation, angiogenesis, hemostasis, or epithelial barrier formation, but also developmental processes such as hematopoiesis, germ cell development, and development of the nervous system. Several of these functions of JAMs depend on a physical and functional interaction with integrins. The JAM - integrin interactions in trans regulate cell-cell adhesion, their interactions in cis regulate signaling processes originating at the cell surface. The JAM - integrin interaction can regulate the function of the JAM as well as the function of the integrin. Beyond the physical interaction with integrins, JAMs can regulate integrin function through intracellular signaling indicating an additional level of JAM - integrin cross-talk. In this review, we describe the various levels of the functional interplay between JAMs and integrins and the role of this interplay during different physiological processes.
连接黏附分子(JAMs)是免疫球蛋白超家族的细胞表面黏附受体。JAMs在成体生物以及发育过程中都参与多种生物学过程。这些过程包括炎症、血管生成、止血或上皮屏障形成等,也包括造血、生殖细胞发育和神经系统发育等发育过程。JAMs的这些功能中有几个依赖于与整合素的物理和功能相互作用。反式的JAM-整合素相互作用调节细胞间黏附,其顺式相互作用调节源自细胞表面的信号传导过程。JAM-整合素相互作用可以调节JAM的功能以及整合素的功能。除了与整合素的物理相互作用外,JAMs还可以通过细胞内信号传导调节整合素功能,这表明JAM-整合素存在额外水平的相互作用。在这篇综述中,我们描述了JAMs与整合素之间功能相互作用的不同层面以及这种相互作用在不同生理过程中的作用。