Yamada K M
Craniofacial Developmental Biology and Regeneration Branch, National Institute of Dental Research, National Institutes of Health, Bethesda, MD, USA.
Matrix Biol. 1997 Oct;16(4):137-41. doi: 10.1016/s0945-053x(97)90001-9.
Integrins provide dynamic links between cells and extracellular matrix molecules. Although integrins were originally viewed as relatively simple adhesion molecules, it soon became clear that intracellular signal transduction initiated by integrins is centrally involved in many cellular processes. In fact, a remarkable number of classical signaling pathways are now known to be activated or modified by the interactions of cells with matrix proteins via integrins. These integrin signaling responses can also involve many other extracellular and intracellular molecules. The following mini-reviews were solicited from some of the future leaders in the field of integrin signaling. They examine selected important portions of this field, provide conceptual syntheses from a large and confusing literature, and then propose novel testable ideas. These ideas should encourage dialogue and open new avenues of research in this rapidly expanding, exciting field.
整合素在细胞与细胞外基质分子之间提供动态连接。尽管整合素最初被视为相对简单的黏附分子,但很快就清楚地认识到,由整合素引发的细胞内信号转导在许多细胞过程中起着核心作用。事实上,现在已知相当数量的经典信号通路会因细胞通过整合素与基质蛋白的相互作用而被激活或修饰。这些整合素信号反应还可能涉及许多其他细胞外和细胞内分子。以下这些小型综述是从整合素信号领域的一些未来领军人物中征集而来的。他们审视了该领域选定的重要部分,从大量繁杂的文献中进行概念性综合,然后提出新颖且可验证的观点。这些观点应能促进对话,并为这个迅速发展、令人兴奋的领域开辟新的研究途径。