Department of Molecular Genetics, Institute of Biomedical Science, Kansai Medical University, Osaka 573-1010, Japan.
Cells. 2022 May 26;11(11):1751. doi: 10.3390/cells11111751.
Integrin LFA1 is a cell adhesion receptor expressed exclusively in leukocytes, and plays crucial roles in lymphocyte trafficking, antigen recognition, and effector functions. Since the discovery that the adhesiveness of LFA1 can be dynamically changed upon stimulation, one challenge has been understanding how integrins are regulated by inside-out signaling coupled with macromolecular conformational changes, as well as ligand bindings that transduce signals from the extracellular domain to the cytoplasm in outside-in signaling. The small GTPase Rap1 and integrin adaptor proteins talin1 and kindlin-3 have been recognized as critical molecules for integrin activation. However, their cooperative regulation of integrin adhesiveness in lymphocytes requires further research. Recent advances in single-molecule imaging techniques have revealed dynamic molecular processes in real-time and provided insight into integrin activation in cellular environments. This review summarizes integrin regulation and discusses new findings regarding the bidirectionality of LFA1 activation and signaling processes in lymphocytes.
整合素 LFA1 是一种仅在白细胞中表达的细胞黏附受体,在淋巴细胞的迁移、抗原识别和效应功能中发挥着关键作用。自发现 LFA1 的黏附性可以在刺激下动态改变以来,一个挑战是理解整合素如何通过内外信号传递以及大分子构象变化来调节,以及配体结合如何将信号从细胞外结构域传递到细胞质中的内信号。小 GTP 酶 Rap1 和整合素衔接蛋白 talin1 和 kindlin-3 已被认为是整合素激活的关键分子。然而,它们在淋巴细胞中对整合素黏附性的协同调节仍需要进一步研究。单细胞成像技术的最新进展实时揭示了动态分子过程,并深入了解了细胞环境中的整合素激活。本综述总结了整合素的调节,并讨论了关于 LFA1 在淋巴细胞中激活和信号传递过程的双向性的新发现。