Center for Protein Assemblies and TUM School of Natural Sciences, Department of Bioscience, Chair of Molecular Biophysics, Technical University of Munich, Garching 85748, Germany.
Department of Molecular Medicine, Max Planck Institute of Biochemistry, Martinsried 82152, Germany.
Proc Natl Acad Sci U S A. 2023 Jun 27;120(26):e2218116120. doi: 10.1073/pnas.2218116120. Epub 2023 Jun 20.
Integrin-mediated adhesion is essential for metazoan life. Integrin binding to ligand requires an activation step prior to binding ligand that depends on direct binding of talin and kindlin to the β-integrin cytoplasmic tail and the transmission of force from the actomyosin via talin to the integrin-ligand bonds. However, the affinity of talin for integrin tails is low. It is therefore still unclear how such low-affinity bonds are reinforced to transmit forces up to 10 to 40 pN. In this study, we use single-molecule force spectroscopy by optical tweezers to investigate the mechanical stability of the talin•integrin bond in the presence and absence of kindlin. While talin and integrin alone form a weak and highly dynamic slip bond, the addition of kindlin-2 induces a force-independent, ideal talin•integrin bond, which relies on the steric proximity of and the intervening amino acid sequences between the talin- and kindlin-binding sites in the β-integrin tail. Our findings show how kindlin cooperates with talin to enable transmission of high forces required to stabilize cell adhesion.
整联蛋白介导的黏附对于多细胞生物的生命活动至关重要。整联蛋白与配体的结合需要在结合配体之前进行激活步骤,该步骤依赖于talin 和 kindlin 直接结合到β整联蛋白胞质尾部,以及肌动球蛋白通过 talin 将力传递到整合素-配体结合物。然而,talin 与整联蛋白尾部的亲和力较低。因此,仍然不清楚如何增强这种低亲和力的键来传递高达 10 到 40 pN 的力。在这项研究中,我们使用光学镊子的单分子力谱技术研究了有和没有 kindlin 存在时 talin•integrin 键的机械稳定性。虽然 talin 和整联蛋白单独形成弱且高度动态的滑动键,但添加 kindlin-2 会诱导一种与力无关的理想 talin•integrin 键,该键依赖于 talin 和 kindlin 结合位点之间β整联蛋白尾部的空间接近和 intervening 氨基酸序列。我们的研究结果表明,kindlin 如何与 talin 合作,以实现稳定细胞黏附所需的高力传递。