Targeting Epsins to Inhibit FGF Signaling while Potentiating TGF-beta Signaling Constrains Endothelial-to-Mesenchymal Transition in Atherosclerosis
Dong, Y.; Wang, B.; Du, M.; Zhu, B.; Cui, K.; Chan, K.; Cowan, D. B.; Bhattacharjee, S.; Wong, S.; Bischoff, J.; Linton, M. F.; Chen, H.
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BACKGROUNDEpsin endocytic adaptor proteins are implicated in the progression of atherosclerosis; however, the underlying molecular mechanisms have not yet been fully defined. In this study, we determined how epsins enhance endothelial-to-mesenchymal transition (EndoMT) in atherosclerosis and assessed the efficacy of a therapeutic peptide in a preclinical model of this disease. METHODSUsing single cell RNA sequencing (scRNA-seq), combined with molecular, cellular, and biochemical analyses, we investigated the role of epsins in stimulating EndoMT using knock-out mouse models. The therapeutic efficacy of a synthetic peptide targeting atherosclerotic plaques was then assessed in Apoe-/- mice. RESULTSScRNA-seq and lineage tracing revealed that epsins 1 and 2 promote EndoMT, and the loss of endothelial epsins inhibits EndoMT marker expression as well as transforming growth factor-beta signaling in vitro and in atherosclerotic mice, which is associated with smaller lesions in Apoe-/- mouse model. Mechanistically, the loss of endothelial cell epsins results in increased fibroblast growth factor receptor-1 (FGFR1) expression that inhibits TGF-{beta} signaling and EndoMT. Epsins directly bind ubiquitinated FGFR1 through their ubiquitin-interacting motif (UIM), which results in endocytosis and degradation of this receptor complex. Consequently, administration of a synthetic UIM-containing peptide API significantly attenuates EndoMT and progression of atherosclerosis. CONCLUSIONSWe conclude that epsins potentiate EndoMT during atherogenesis by increasing TGF-{beta} signaling through FGFR1 internalization and degradation. Inhibition of EndoMT by reducing epsin-FGFR1 interaction with a therapeutic peptide may represent a novel treatment strategy for atherosclerosis.
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