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Talin regulates the adhesion and migration of cells in part by promoting the affinity of integrins for extracellular matrix proteins, a process that in cells such as endothelial cells and platelets requires the direct interaction of talin with both the small GTPase Rap1 bound to GTP (Rap1-GTP) and the integrin β3 cytoplasmic tail. To study this process in more detail, we employed an optogenetic approach in living, immortalized endothelial cells to be able to regulate the interaction of talin with the plasma membrane. Previous studies identified talin as the Rap1-GTP effector for β3 integrin activation. Surprisingly, optogenetic recruitment of talin-1 (TLN1; herein referred to as talin) to the plasma membrane also led to the localized activation of Rap1 itself, apparently by talin competing for Rap1-GTP with SHANK3, a protein known to sequester Rap1-GTP and to block integrin activation. Rap1 activation by talin was localized to the cell periphery in suspension cells and within lamellipodia and pseudopodia in cells adherent to fibronectin. Thus, membrane-associated talin can play a dual role in regulating integrin function in endothelial cells: first, by releasing Rap1-GTP from its sequestration by SHANK3, and second, by serving as the relevant Rap1 effector for integrin activation.
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http://dx.doi.org/10.1242/jcs.263595 | DOI Listing |
J Anat
September 2025
Department of Anatomy and Cell Biology, Hyogo Medical University School of Medicine, Nishinomiya, Hyogo, Japan.
The white matter of the spinal cord is essential for sensory and motor signaling, and its proper development is crucial for establishing functional neuronal circuits. However, the mechanisms underlying white matter formation remain incompletely understood. We hypothesized that the extracellular matrix, particularly laminins, plays a key role in this process.
View Article and Find Full Text PDFImmunity
September 2025
Key Laboratory of Multi-cell Systems, CAS Center for Excellence in Molecular Cell Science, Shanghai Institute of Biochemistry and Cell Biology, University of Chinese Academy of Sciences, Chinese Academy of Sciences, Shanghai, China. Electronic address:
In this issue of Immunity, Lv et al. develop a new CAR-T cell culture system that uses integrin mechanical signaling to boost CAR-T proliferation while preserving stemness, pointing out a new direction of CAR-T manufacturing.
View Article and Find Full Text PDFThromb Res
September 2025
Departamento de Química and Institute for advanced research in chemical Science (IAdChem), Facultad de Ciencias, Módulo 13, Universidad Autónoma de Madrid, 28049, Madrid, Spain.
Platelet integrin αIIbβ3 is the final common effector of arterial thrombosis: it switches from a low-affinity to a high-affinity state, binds fibrinogen, and initiates the outside-in signals that stabilize a growing clot. Calcium- and integrin-binding protein 1 (CIB1) emerged as the first endogenous partner of the αIIb cytoplasmic tail and is now recognized as a dual-role adaptor. At rest, Ca-free CIB1 tethers the inner membrane clasp and restrains premature integrin activation; after ligand engagement, Ca-bound CIB1 docks onto αIIb, recruits focal-adhesion kinase and amplifies Src-dependent cytoskeletal remodeling.
View Article and Find Full Text PDFSci Adv
September 2025
Division of Basic Sciences, Fred Hutchinson Cancer Center, Seattle, WA 98109, USA.
Integrins bind ligands between their alpha (α) and beta (β) subunits and transmit signals through conformational changes. Early in chordate evolution, some α subunits acquired an "inserted" (I) domain that expanded integrin's ligand-binding repertoire but obstructed the ancestral ligand pocket, seemingly blocking conventional integrin activation. Here, we compare cryo-electron microscopy structures of apo and ligand-bound states of the I domain-containing αEβ integrin and the I domain-lacking αβ integrin to illuminate how the I domain intrinsically mimics an extrinsic ligand to preserve integrin function.
View Article and Find Full Text PDFMol Biol Cell
September 2025
Department of Cellular and Physiological Sciences, University of British Columbia, Vancouver, BC V6T 1Z3, Canada.
During embryonic development, neural crest-derived melanoblasts, which are precursors of pigment-producing melanocytes, disperse throughout the skin by long-range cell migration that requires adhesion to the ECM. Members of the integrin family of cell-ECM adhesion receptors are thought to contribute to melanocyte migration . However, due to the functional redundancy between different integrin heterodimers, the precise role of integrins in melanoblast migration, as well as the mechanisms that regulate them in this process, especially in contexts, remain poorly understood.
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