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Biology subjects

Zaarour, R. F.

Publications and source records attributed to Zaarour, R. F..

2 recordsLinked to original sources

Mindin differentially regulates fibroblast subpopulations via distinct members of the Src family kinases during fibrogenesis.

Fibrosis is the result of excessive deposition of extracellular matrix (ECM) proteins leading to tissue hardening and loss of organ function. A central player driving fibrosis is the activated fibroblast, which exhibits enhanced migration, proliferation, contraction, and ECM production. However, this raises an interesting puzzle of whether the same fibroblast performs all of the processes that fall under the umbrella term of "activation". Given the heterogeneity of fibroblasts in connective tissues, there are subpopulations of fibroblasts that perform specific functions that are under different regulatory controls. Using a transgenic mouse model of skin fibrosis, we find that the secretion of Mindin from Snail transgenic keratinocytes differentially alters the characteristic of distinct fibroblast subpopulations. Mindin induces migration and inflammatory gene expression of the Sca1+ subpopulation of dermal fibroblasts in a Fyn kinase-dependent manner. On the other hand, Mindin increases the contractile behaviour and collagen production in the papillary CD26+ dermal fibroblasts via c-Src. Moreover, in the context of the fibrotic microenvironment of the tumour stroma, we found that differential responses of resident fibroblasts subpopulations to Mindin extend to the generation of functionally heterogeneous cancer-associated fibroblasts (CAFs). Overall, this work highlights the importance of Mindin in mediating the cellular and signalling heterogeneity of dermal fibroblasts in skin fibrosis and cancer.

cell biology↗

Mindin is essential for cutaneous fibrogenesis in a new mouse model of systemic sclerosis

Fibrosis is a result of chronically activated fibroblasts leading to the overproduction of extracellular matrix (ECM), causing tissue hardening and loss of organ function. Systemic sclerosis (SSc) is a fibrotic skin disease marked by inflammation, autoimmunity and vasculopathy along with progressive fibrosis of the skin and internal organs. A major bottleneck in understanding the etiology of SSc has been the lack of a holistic animal model that can mimic the human SSc disease. We found that the transcription factor Snail is overexpressed in the epidermis of SSc patients and a transgenic mouse recapitulating this expression pattern is sufficient to induce hallmark clinical features of the human disease. Using this mouse model as a discovery platform, we have uncovered a critical role for the matricellular protein Mindin in fibrogenesis. Mindin is produced by Snail transgenic skin keratinocytes and aids fibrogenesis by inducing inflammatory cytokine and collagen production in resident dermal fibroblasts. Given the dispensability of Mindin in normal tissue physiology, targeting this protein holds promise as an effective therapy for fibrosis.

pathology↗