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Defective granulation tissue formation in mice with specific ablation of integrin-linked kinase in fibroblasts - role of TGFβ1 levels and RhoA activity. | LitMetric

AI Article Synopsis

  • Fibroblasts play a key role in wound healing by responding to TGFβ1 and mechanical forces at focal adhesions, with integrin-linked kinase (ILK) being essential for this process.
  • Genetic inactivation of ILK specifically in fibroblasts leads to reduced myofibroblast numbers and impaired healing, although inflammation and blood vessel formation remain unaffected.
  • ILK deficiency results in lower TGFβ1 levels and abnormal cell behavior due to increased RhoA activity, but restoring RhoA signaling improves fibroblast function and TGFβ1 production needed for skin repair.

Article Abstract

Wound healing crucially relies on the mechanical activity of fibroblasts responding to TGFβ1 and to forces transmitted across focal adhesions. Integrin-linked kinase (ILK) is a central adapter recruited to integrin β1 tails in focal adhesions mediating the communication between cells and extracellular matrix. Here, we show that fibroblast-restricted inactivation of ILK in mice leads to impaired healing due to a severe reduction in the number of myofibroblasts, whereas inflammatory infiltrate and vascularization of the granulation tissue are unaffected. Primary ILK-deficient fibroblasts exhibit severely reduced levels of extracellular TGFβ1, α-smooth muscle actin (αSMA) production and myofibroblast conversion, which are rescued by exogenous TGFβ1. They are further characterized by elevated RhoA and low Rac1 activities, resulting in abnormal shape and reduced directional migration. Interference with RhoA-ROCK signaling largely restores morphology, migration and TGFβ1 levels. We conclude that, in fibroblasts, ILK is crucial for limiting RhoA activity, thus promoting TGFβ1 production, which is essential for dermal repair following injury.

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Source
http://dx.doi.org/10.1242/jcs.063024DOI Listing

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