Integrin Binding Dynamics Modulate Ligand-Specific Mechanosensing in Mammary Gland Fibroblasts

Publication date

2023-03-13T14:13:19Z

2023-03-13T14:13:19Z

2020-03-27

2023-03-13T14:13:19Z

Abstract

The link between integrin activity regulation and cellular mechanosensing of tissue rigidity, especially on different extracellular matrix ligands, remains poorly understood. Here, we find that primary mouse mammary gland stromal fibroblasts (MSFs) are able to spread efficiently, generate high forces, and display nuclear YAP on soft collagen-coated substrates, resembling the soft mammary gland tissue. We describe that loss of the integrin inhibitor, SHARPIN, impedes MSF spreading specifically on soft type I collagen but not on fibronectin. Through quantitative experiments and computational modeling, we find that SHARPIN-deficient MSFs display faster force-induced unbinding of adhesions from collagen-coated beads. Faster unbinding, in turn, impairs force transmission in these cells, particularly, at the stiffness optimum observed for wild-type cells. Mechanistically, we link the impaired mechanotransduction of SHARPIN-deficient cells on collagen to reduced levels of collagen-binding integrin α11β1. Thus integrin activity regulation and α11β1 play a role in collagen-specific mechanosensing in MSFs.

Document Type

Article


Published version

Language

English

Publisher

Elsevier

Related items

Reproducció del document publicat a: https://doi.org/10.1016/j.isci.2020.100907

iScience, 2020, vol. 23, num. 9, p. 100907

https://doi.org/10.1016/j.isci.2020.100907

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Rights

cc-by nc-nd (c) Lerche, Martina et al., 2020

http://creativecommons.org/licenses/by-nc-nd/3.0/es/

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