Department of Cardiovascular & Metabolic Sciences, Lerner Research Institute, Cleveland Clinic, 9500 Euclid Avenue, Cleveland, OH 44195, USA.
Department of Neurosciences, Lerner Research Institute, Cleveland Clinic, 9500 Euclid Avenue, Cleveland, OH 44195, USA.
Structure. 2019 Nov 5;27(11):1686-1697.e5. doi: 10.1016/j.str.2019.09.006. Epub 2019 Oct 4.
Activation of cell surface receptor integrin has been extensively studied as the first key step to trigger cell adhesion, but the subsequent events, widely regarded as integrin "outside-in" signaling to form supramolecular complexes (focal adhesions [FAs]) to promote dynamic cell adhesion, remain poorly elucidated. Integrin activator kindlin-2 was recently found to associate with paxillin in nascent FAs, implicating an early yet undefined integrin outside-in signaling event. Here we show structurally that kindlin-2 recognizes paxillin via a distinct interface involving the ubiquitin-like kindlin-2 F0 domain and the paxillin LIM4 domain. The interface is adjacent to the membrane binding site of kindlin-2 F0, suggesting a mechanism for kindlin-2 to recruit paxillin to the membrane-proximal site where FA assembly is initiated. Disruption of the interface impaired the localization of paxillin, causing strong defects in FA assembly and cell migration. These data unveil a structural basis of the kindlin-2/paxillin interaction in controlling dynamic cell adhesion.
细胞表面受体整合素的激活已被广泛研究作为触发细胞黏附的第一步,但随后的事件,被广泛认为是整合素“内向外”信号转导,形成超分子复合物(黏附斑[FAs]),以促进动态细胞黏附,仍未得到充分阐明。最近发现整合素激活蛋白kindlin-2 与黏着斑形成早期的paxillin 相关,提示存在一个早期但尚未定义的整合素“内向外”信号事件。在这里,我们从结构上表明,kindlin-2 通过一个独特的界面识别 paxillin,该界面涉及泛素样的 kindlin-2 F0 结构域和 paxillin LIM4 结构域。该界面紧邻 kindlin-2 F0 的膜结合位点,提示了一种机制,即 kindlin-2 将 paxillin 募集到黏附斑组装起始的膜近端位点。界面的破坏会影响 paxillin 的定位,导致黏附斑组装和细胞迁移的严重缺陷。这些数据揭示了 kindlin-2/paxillin 相互作用在控制动态细胞黏附中的结构基础。