Targeting an atypical G protein-coupled receptor signaling pathway for cardiac fibrosis therapy.

Cardiac fibrosis independently predicts adverse outcomes in heart failure (HF), yet no Food and Drug Administration-approved therapy directly targets fibrotic remodeling in the heart. To address this unmet clinical need, we used a multidimensional drug discovery pipeline centered on a human induced pluripotent stem cell (iPSC)-based platform. Through high-throughput screening, we identified CGS15943 (CGS) as the lead antifibrotic compound and validated its activity in human cardiac fibroblasts, three-dimensional engineered heart tissues, and animal models of HF. Mechanistic studies revealed an atypical adenosine receptor (AR)-dependent signaling pathway in which AR subtypes converge on Gβγ (the βγ subunits of heterotrimeric GTP-binding proteins) to activate phosphoinositide 3-kinase (PI3K)-AKT and yes-associated protein (YAP). CGS suppressed this signaling axis, thereby reducing fibrotic gene expression and fibroblast activation. These findings establish AR-driven Gβγ signaling as a potential therapeutic target for cardiac fibrosis.
Cardiovascular diseases
Care/Management

Authors

Zhang Zhang, Shivnaraine Shivnaraine, Ren Ren, Thai Thai, Janicot Janicot, Zhu Zhu, Huang Huang, Siepe Siepe, Tu Tu, Liu Liu, Maziarz Maziarz, Deutsch Deutsch, Liu Liu, Liu Liu, Shin Shin, Kim Kim, Chandy Chandy, Kalocsay Kalocsay, Chiamvimonvat Chiamvimonvat, Garcia-Marcos Garcia-Marcos, Kobilka Kobilka, Wu Wu
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