细胞粘附
抑制性突触后电位
细胞生物学
信号转导
细胞
计算生物学
生物
神经科学
遗传学
作者
Erumbi S. Rangarajan,Julian L. Bois,Scott B. Hansen,Tina Izard
标识
DOI:10.1038/s41467-024-52581-2
摘要
Talin regulates crucial cellular functions, including cell adhesion and motility, and affects human diseases. Triggered by mechanical forces, talin plays crucial roles in facilitating the formation of focal adhesions and recruiting essential focal adhesion regulatory elements such as vinculin. The structural flexibility allows talin to fine-tune its signaling responses. This study presents our 2.7 Å cryoEM structures of talin, which surprisingly uncovers several auto-inhibitory states. Contrary to previous suggestions, our structures reveal that (1) the first and last three domains are not involved in maintaining talin in its closed state and are mobile, (2) the talin F-actin and membrane binding domain are loosely attached and thus available for binding, and (3) the main force-sensing domain is oriented with its vinculin binding sites ready for release. These structural snapshots offer insights and advancements in understanding the dynamic talin activation mechanism, which is crucial for mediating cell adhesion. Talin controls cell adhesion and motility, impacting disease. 2.7 Å cryoEM structures reveal mobile membrane and F-actin binding domains, and force-sensing readiness, providing insights into the dynamic activation of talin in mediating cell adhesion.
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