Structural Biology Programme, Spanish National Cancer Research Centre (CNIO), 28029 Madrid, Spain.
Structural and Chemical Biology, Margarita Salas Center for Biological Research (CIB), Spanish National Research Council (CSIC), 28040 Madrid, Spain.
J Cell Sci. 2022 Oct 15;135(20). doi: 10.1242/jcs.259089. Epub 2022 Oct 14.
Focal adhesion kinase (FAK; also known as PTK2) was discovered three decades ago and is now recognised as a key player in the regulation of cell-matrix adhesion and mesenchymal cell migration. Although it is essential during development, FAK also drives invasive cancer progression and metastasis. On a structural level, the basic building blocks of FAK have been described for some time. However, a picture of how FAK integrates into larger assemblies in various cellular environments, including one of its main cellular locations, the focal adhesion (FA) complex, is only beginning to emerge. Nano-resolution data from cellular studies, as well as atomic structures from reconstituted systems, have provided first insights, but also point to challenges that remain for obtaining a full structural understanding of how FAK is integrated in the FA complex and the structural changes occurring at different stages of FA maturation. In this Review, we discuss the known structural features of FAK, the interactions with its partners within the FA environment on the cell membrane and propose how its initial assembly in nascent FAs might change during FA maturation under force.
黏着斑激酶(FAK;也称为 PTK2)于三十年前被发现,目前被认为是细胞-基质黏附和间充质细胞迁移调节的关键因子。尽管 FAK 在发育过程中是必需的,但它也驱动侵袭性癌症的进展和转移。在结构水平上,FAK 的基本组成部分已经描述了一段时间。然而,FAK 如何在各种细胞环境中(包括其主要的细胞位置之一,黏着斑(FA)复合物)整合到更大的组装体中的情况才刚刚开始显现。来自细胞研究的纳米分辨率数据以及重组系统的原子结构提供了初步的见解,但也指出了在获得 FAK 如何整合到 FA 复合物中的完整结构理解以及在 FA 成熟的不同阶段发生的结构变化方面仍然存在挑战。在这篇综述中,我们讨论了 FAK 的已知结构特征,以及其在细胞膜上 FA 环境中的伙伴之间的相互作用,并提出了在力的作用下 FA 成熟过程中 FAK 在新生 FA 中的初始组装可能发生的变化。