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Journal ArticleDOI

β1- and αv-class integrins cooperate to regulate myosin II during rigidity sensing of fibronectin-based microenvironments.

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TLDR
This study assigns specific functions to distinct fibronectin-binding integrins, demonstrating that α5β1integrins accomplish force generation, whereas αv-class Integrins mediate the structural adaptations to forces, which cooperatively enable cells to sense the rigidity of fibronECTin-based microenvironments.
Abstract
How different integrins that bind to the same type of extracellular matrix protein mediate specific functions is unclear. We report the functional analysis of β1- and αv-class integrins expressed in pan-integrin-null fibroblasts seeded on fibronectin. Reconstitution with β1-class integrins promotes myosin-II-independent formation of small peripheral adhesions and cell protrusions, whereas expression of αv-class integrins induces the formation of large focal adhesions. Co-expression of both integrin classes leads to full myosin activation and traction-force development on stiff fibronectin-coated substrates, with αv-class integrins accumulating in adhesion areas exposed to high traction forces. Quantitative proteomics linked αv-class integrins to a GEF-H1-RhoA pathway coupled to the formin mDia1 but not myosin II, and α5β1 integrins to a RhoA-Rock-myosin II pathway. Our study assigns specific functions to distinct fibronectin-binding integrins, demonstrating that α5β1integrins accomplish force generation, whereas αv-class integrins mediate the structural adaptations to forces, which cooperatively enable cells to sense the rigidity of fibronectin-based microenvironments.

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Journal ArticleDOI

Unchain My Heart: Integrins at the Basis of iPSC Cardiomyocyte Differentiation.

TL;DR: This review introduces the main integrin-dependent mechanisms and signalling pathways involved in mechanotransduction and focuses on biomaterial-based in vitro models to evaluate the relevance of this process in iPSC differentiation into cardiomyocytes.
Journal ArticleDOI

αv-Class integrin binding to fibronectin is solely mediated by RGD and unaffected by an RGE mutation

TL;DR: Fibronectin–integrin interactions through the Arg-Gly-Asp cell binding motif play crucial roles in cellular functions and it is shown that neither α5β1 nor αv-class integrins bind to RGD-deficient fibronect in mice and that α v-class Integrins retain normal binding to a mutated RGE motif.
Journal ArticleDOI

Super-resolution links vinculin localization to function in focal adhesions

TL;DR: The combination of three-dimensional super-resolution imaging and loss- or gain-of-function protein mutants now links the nanoscale dynamic localization of proteins to their activation and function within focal adhesions.
Journal ArticleDOI

Interplay between Cell-Surface Receptors and Extracellular Matrix in Skin.

TL;DR: In this review, major epidermal and dermal cell surface receptors will be addressed with respect to their interactions with matrix components as well as their roles in fibrotic, inflammatory or tumorigenic skin diseases.
Journal ArticleDOI

The journey of integrins and partners in a complex interactions landscape studied by super-resolution microscopy and single protein tracking.

TL;DR: Recent advances made possible by super-resolution microscopies and single molecule tracking approaches that provided new understanding on the organization and the dynamics of integrins and intracellular regulators at the nanoscale in living cells are described.
References
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