Department of Cardiovascular & Metabolic Sciences, Lerner Research Institute, Cleveland Clinic, 9500 Euclid Ave., Cleveland, OH, 44195, USA.
Department of Biochemistry, Case Western Reserve University, Cleveland, OH, 44106, USA.
Nat Commun. 2022 Apr 29;13(1):2362. doi: 10.1038/s41467-022-30117-w.
Talin-induced integrin binding to extracellular matrix ligands (integrin activation) is the key step to trigger many fundamental cellular processes including cell adhesion, cell migration, and spreading. Talin is widely known to use its N-terminal head domain (talin-H) to bind and activate integrin, but how talin-H operates in the context of full-length talin and its surrounding remains unknown. Here we show that while being capable of inducing integrin activation, talin-H alone exhibits unexpectedly low potency versus a constitutively activated full-length talin. We find that the large C-terminal rod domain of talin (talin-R), which otherwise masks the integrin binding site on talin-H in inactive talin, dramatically enhances the talin-H potency by dimerizing activated talin and bridging it to the integrin co-activator kindlin-2 via the adaptor protein paxillin. These data provide crucial insight into the mechanism of talin and its cooperation with kindlin to promote potent integrin activation, cell adhesion, and signaling.
Talin 诱导整合素与细胞外基质配体结合(整合素激活)是触发许多基本细胞过程的关键步骤,包括细胞黏附、细胞迁移和铺展。众所周知,Talin 利用其 N 端头部结构域(talin-H)结合并激活整合素,但在全长 talin 及其周围环境中,talin-H 如何发挥作用仍不清楚。在这里,我们发现虽然 talin-H 能够诱导整合素激活,但与组成性激活的全长 talin 相比,其活性出人意料地低。我们发现,talin 的大 C 端杆状结构域(talin-R)在无活性 talin 中掩盖了 talin-H 上的整合素结合位点,通过二聚化激活的 talin 并通过衔接蛋白 paxillin 将其与整合素共激活因子 kindlin-2 桥接,极大地增强了 talin-H 的效力。这些数据为 talin 的机制及其与 kindlin 合作以促进有效的整合素激活、细胞黏附和信号转导提供了重要的见解。