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Updated: Feb 4, 2026

Large Animal Model for Evaluating the Efficacy of the Gene Therapy in Ischemic Heart
Published on: September 2, 2021
Ischemic heart disease-associated ∆M1-Q91 PDE5A2 mutant shows reduced efficacy for cGMP, but not sildenafil,
Wesam S Ahmed1, Asma Fatima1, Anupriya M Geethakumari1
1College of Health & Life Sciences, Hamad Bin Khalifa University, Doha, Qatar.
Abstract:
Phosphodiesterase 5 (PDE5) regulates several physiological processes, including cardiovascular function. A familial PDE5A variant resulting in an N-terminal truncation (∆M1-Q91) in PDE5A2 has been linked to premature ischemic heart disease, but its functional impact is unclear. Using computational analysis and BRET-based biosensors, we show that ∆M1-Q91 deletion alters structural dynamics and reduces the efficacy of cGMP-induced conformational change in PDE5. Molecular dynamics simulations and normal mode analysis using structural models revealed altered dynamics and correlated motions in the mutant. BRET assays showed a higher EC50 for cGMP-induced, but not sildenafil-induced, conformational change in the ∆M1-Q91 mutant PDE5A2. These findings suggest that M1-Q91 deletion impairs cGMP-mediated allosteric regulation in PDE5A2 without altering inhibitor sensitivity, offering insights into potential precision therapies targeting this variant.
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