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Madhavan, S. R.

Publications and source records attributed to Madhavan, S. R..

2 recordsLinked to original sources

Lipodystrophy and recovery are mediated by the Wnt/lipogenesis axis during skin fibrosis.

Acquired lipodystrophy in the dermal white adipose tissue (DWAT) is a salient feature of skin fibrosis, and is followed by accumulation of extracellular matrix (ECM). Lipodystrophy syndromes, often associated with metabolic co-morbidities, are estimated to affect 1 in 20,000 people. We recently showed that fibrosis-associated lipodystrophy is dependent on sustained Wnt signaling, but the mechanism is unclear. Transcriptomic profiling of mature dermal adipocytes in vivo reveal that Wnt activation downregulates the de novo-lipogenesis (DNL) axis enzymes within 48 hours. We found that protein expression of Fatty Acid Synthase (FASN), a key DNL enzyme, is dependent on sustained Wnt activation in vitro and in vivo. In human systemic sclerosis, FASN mRNA is significantly downregulated during two years of disease. Remarkably, pharmacological inhibition of FASN enzyme during reversal from Wnt induced fibrosis impedes recovery of DWAT lipid content as well as ECM accumulation and topography. All together, we demonstrate that acquired lipodystrophy in the context of skin fibrosis is mediated by a new role of the Wnt-DNL axis. These findings underscore the importance of this pathway in lipodystrophy and fibrosis, opening new avenues for therapeutic targets in skin fibrosis.

cell biology↗

Wnt activation in mature dermal adipocytes leads to lipodystrophy and skin fibrosis via ATGL-dependent lipolysis.

ObjectiveAccumulation of extracellular matrix (ECM) and dermal adipocyte lipodystrophy occurs during skin fibrosis, which compromises the skins flexibility and function. We recently showed that sustained Wnt activation in dermal progenitor cells leads to fibrotic ECM thickening in the dermis and lipodystrophy of dermal white adipose tissue (DWAT). The aim of this study was to test if Wnt/{beta}-catenin signaling in mature dermal adipocytes directly leads to lipodystrophy and impact skin fibrosis. MethodsWe developed a genetically lineage traceable, DWAT specific, inducible and reversible mouse model of Wnt activation (Adipo-{beta}-catistab) in the dorsal skin. We analyzed the DWAT lipid droplet size, cell identity, and affect on ECM accumulation and remodeling in skin fibrosis. Adipocyte triglyceride lipase (ATGL) is the key rate limiting enzyme of the lipolysis pathway, which is a biological process of breaking down triglyceride stores in adipocytes. The Atgl gene was conditionally deleted in mature dermal adipocytes to test the requirement of the lipolysis pathway in the Wnt-induced lipodystrophy (Adipo-{beta}-catistab; Atglfl/fl). ResultsHere, we utilize mouse genetic models with lineage tracing to show that Wnt activation in mature dermal adipocytes is sufficient to induce adipocyte lipodystrophy and fibrotic collagen remodeling. Upon withdrawal of adipocyte-restricted Wnt activation, lipodystrophy and fibrosis were reversed. Mechanistically, we find that Wnt activation stimulates Adipose Triglyceride Lipase (ATGL)-mediated lipolysis pathway. We found Atgl in dermal adipocytes is functionally required for Wnt-induced lipodystrophy in the DWAT and fibrotic remodeling. ConclusionCollectively, this study demonstrates that Wnt activation in dermal adipocytes promotes lipolysis and may be a novel therapeutic avenue for preventing and reversing lipodystrophy and skin fibrosis.

cell biology↗