[No authors listed]
Pulmonary arterial hypertension (PAH) is a severe disease characterized by elevated pulmonary arterial pressure and pulmonary vascular resistance, resulting in right ventricular failure and death. Compelling evidence has suggested the roles of microRNAs (miRNAs/miRs) in PAH. The present study investigated the possible effects of miRâletâ7d on PAH through autophagyârelated 16âlike 1 (ATG16L1). Initially, the serum levels of letâ7d in PAH patients were detected. Rats were then treated with monocrotaline to induce a rat model of PAH, after which the right ventricular systolic pressure (RVSP) and right ventricular hypertrophy index (RVHI) were determined. Next, the putative binding sites between letâ7d and ATG16L1 were detected. The expression of letâ7d and ATG16L1 in PAH rat models and cells was upregulated or downregulated to assess the effects of these molecules on autophagy in pulmonary artery vascular endothelial cells (PAECs) and on endothelin synthesis. In addition, the levels of p62, LC3âI, LC3âII, LC3B and endothelinâ1 (ETâ1) were assessed. The results obtained revealed that letâ7d was downregulated in the serum of PAH patients and rats with PAH. Importantly, ATG16L1 was found to be a target gene of letâ7d and letâ7d could suppress the expression of ATG16L1. Overexpression of letâ7d was found to reduce RVSP and RVHI values. Additionally, upregulation of letâ7d or depletion of ATG16L1 led to suppression of PAEC autophagy and endothelin synthesis, corresponding to decreased ratios of LC3âII to LC3âI and reduced levels of LC3B but elevated levels of p62 in PAECs and ETâ1 in plasma and lung tissues. In summary, letâ7d upregulation alleviates PAH by inhibiting autophagy in PAECs and suppressing endothelin synthesis through negative regulation of ATG16L1.
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