VPS34 regulation in pulmonary arterial vascular smooth muscle cells in pulmonary hypertension
Pulmonary arterial hypertension (PAH) is characterized by the hyperproliferative phenotype of pulmonary arterial smooth muscle cells (PAVSMCs) and extensive extracellular matrix (ECM) remodeling. Vacuolar protein sorting 34 (VPS34), a Class III Phosphatidylinositol-3 Kinase (PI3K), regulates cell proliferation, but its specific function in pulmonary vascular remodeling remains poorly understood. We aim to determine the role of VPS34 activation and regulation in PAVSMC proliferation, matrix deposition, and the progression of PAH. First, we found a marked decrease in the inhibitory phosphorylation of VPS34 at Ser164 (P-S164-VPS34), indicative of constitutive VPS34 activation, in remodeled pulmonary arteries (PAs) from human PAH patients and male mice exposed to Sugen/Hypoxia (SuHx). In human PAH PAVSMCs, siRNA-mediated knockdown of VPS34 or pharmacological inhibition via the selective inhibitor SAR405 significantly blunted cell proliferation and reduced the production of fibronectin, a major component of the remodeled ECM. Mechanistically, we found that Akt activation in PAH PAVSMCs promotes VPS34 activation; Protein Phosphatase 1 Catalytic Subunit Alpha is a potential effector in VPS34 activation; and active VPS34 led to the activation of the mTOR/S6 signaling pathway with tuberous sclerosis complex 2 downregulation. Finally, in vivo treatment with SAR405 attenuated right ventricular systolic pressure, right ventricular hypertrophy, and pulmonary vascular remodeling in SuHx mice, while concurrently decreasing vascular fibronectin deposition. Our study demonstrates that VPS34 activation, driven by an Akt-mediated loss of the inhibitory P-S164, is crucial in PAVSMC proliferation and fibrotic vascular remodeling in PAH. Targeting the VPS34 axis represents a promising anti-remodeling therapeutic strategy for the treatment of PAH. Keywords: Pulmonary arterial hypertension, vacuolar protein sorting 34, pulmonary vascular remodeling, pulmonary arterial vascular smooth muscle