Rigosertib Reverses Hypertrophic Cardiomyopathy in Noonan Syndrome
Levi Legler, Katya Marchetti, Bing Xu, Tara Keshavarz Shirazi, Sereene Kurzum, Chase Kessinger, Izabella Vredenburg, Yan Sun, Frank A. Dinenno, Damian Bohler, Angelika G. Aleman, Nelson A. Rodriguez, Simon Ng, Sophie Gao, Angela Wang, Mayte Suarez-Farinas, Hung-Mo Lin, Tirtha Das, Karen Ocorr, Ross L. Cagan, Bruce D. Gelb, Maria I. KontaridisBACKGROUND:
RASopathies constitute a group of rare genetic disorders caused by mutations in genes along the canonical RAS/mitogen-activated protein kinase (MAPK) signaling pathway, affecting cell growth and differentiation. These syndromes, which include Noonan syndrome (NS), are characterized by developmental delays, distinctive facial dysmorphia, and cardiac defects, notably hypertrophic cardiomyopathy (HCM). Despite their prevalence and impact, therapeutic options for RASopathies remain limited. Rigosertib, a novel dual RAS/MAPK and phosphatidylinositol 3-kinase (PI3K)/AKT pathway inhibitor, is currently in clinical trials for treatment of melanoma and recessive dystrophic epidermolysis bullosa. Here, we identify rigosertib as a candidate therapy for RAF1-associated HCM.
METHODS:
We performed a drug screen of clinically relevant compounds in transgenic
RESULTS:
Rigosertib was effective across a panel of transgenic
CONCLUSIONS:
Together, our findings suggest that rigosertib normalizes and reverses RASopathy-associated HCM and other NS-associated syndromic features, supporting its development as a promising treatment for RAF1-associated HCM and, potentially, other RASopathy-dependent pathologies. This study not only highlights the therapeutic potential of rigosertib but also demonstrates the utility of an integrated approach using