AI Article Synopsis

  • * The study investigates how integrins and cadherins compete for connections to the actin cytoskeleton, which affects MSC mechanosensing and their fate, particularly in relation to the viscosity of the environment.
  • * Using functionalized lipid bilayers to create different viscosities, the research shows that when cadherins bind, integrins' adhesion to the environment weakens, influencing the MSC's decision on how to develop and differentiate.

Article Abstract

Mesenchymal stem cells (MSCs) interact with their surroundings via integrins, which link to the actin cytoskeleton and translate physical cues into biochemical signals through mechanotransduction. N-cadherins enable cell-cell communication and are also linked to the cytoskeleton. This crosstalk between integrins and cadherins modulates MSC mechanotransduction and fate. Here we show the role of this crosstalk in the mechanosensing of viscosity using supported lipid bilayers as substrates of varying viscosity. We functionalize these lipid bilayers with adhesion peptides for integrins (RGD) and N-cadherins (HAVDI), to demonstrate that integrins and cadherins compete for the actin cytoskeleton, leading to an altered MSC mechanosensing response. This response is characterised by a weaker integrin adhesion to the environment when cadherin ligation occurs. We model this competition via a modified molecular clutch model, which drives the integrin/cadherin crosstalk in response to surface viscosity, ultimately controlling MSC lineage commitment.

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Source
http://www.ncbi.nlm.nih.gov/pmc/articles/PMC11479646PMC
http://dx.doi.org/10.1038/s41467-024-53107-6DOI Listing

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