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Article

PARM1 Drives Smooth Muscle Cell Proliferation in Pulmonary Arterial Hypertension via AKT/FOXO3A Axis

1
Division of Cardiology, Department of Internal Medicine, Tongji Hospital, Tongji Medical College, Huazhong University of Science and Technology, Wuhan 430030, China
2
Hubei Provincial Engineering Research Center of Vascular Interventional Therapy, Wuhan 430030, China
3
Division of Trauma & Surgical Critical Care, Department of Surgery, Tongji Hospital, Tongji Medical College, Huazhong University of Science and Technology, Wuhan 430030, China
*
Authors to whom correspondence should be addressed.
These authors contributed equally to this work.
Int. J. Mol. Sci. 2023, 24(7), 6385; https://doi.org/10.3390/ijms24076385
Submission received: 17 November 2022 / Revised: 25 February 2023 / Accepted: 23 March 2023 / Published: 28 March 2023
(This article belongs to the Special Issue Bioinformatics, Omics Tools and Tutorials)

Abstract

Pulmonary arterial hypertension (PAH) is a group of severe, progressive, and debilitating diseases with limited therapeutic options. This study aimed to explore novel therapeutic targets in PAH through bioinformatics and experiments. Weighted gene co-expression network analysis (WGCNA) was applied to detect gene modules related to PAH, based on the GSE15197, GSE113439, and GSE117261. GSE53408 was applied as validation set. Subsequently, the validated most differentially regulated hub gene was selected for further ex vivo and in vitro assays. PARM1, TSHZ2, and CCDC80 were analyzed as potential intervention targets for PAH. Consistently with the bioinformatic results, our ex vivo and in vitro data indicated that PARM1 expression increased significantly in the lung tissue and/or pulmonary artery of the MCT-induced PAH rats and hypoxia-induced PAH mice in comparison with the respective controls. Besides, a similar expression pattern of PARM1 was found in the hypoxia- and PDGF--treated isolated rat primary pulmonary arterial smooth muscle cells (PASMCs). In addition, hypoxia/PDGF--induced PARM1 protein expression could promote the elevation of phosphorylation of AKT, phosphorylation of FOXO3A and PCNA, and finally the proliferation of PASMCs in vitro, whereas PARM1 siRNA treatment inhibited it. Mechanistically, PARM1 promoted PAH via AKT/FOXO3A/PCNA signaling pathway-induced PASMC proliferation.
Keywords: pulmonary arterial hypertension; weighted gene co-expression network analysis (WGCNA); PARM1; AKT; FOXO3A; proliferation pulmonary arterial hypertension; weighted gene co-expression network analysis (WGCNA); PARM1; AKT; FOXO3A; proliferation
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MDPI and ACS Style

He, Z.; Chang, T.; Chen, Y.; Wang, H.; Dai, L.; Zeng, H. PARM1 Drives Smooth Muscle Cell Proliferation in Pulmonary Arterial Hypertension via AKT/FOXO3A Axis. Int. J. Mol. Sci. 2023, 24, 6385. https://doi.org/10.3390/ijms24076385

AMA Style

He Z, Chang T, Chen Y, Wang H, Dai L, Zeng H. PARM1 Drives Smooth Muscle Cell Proliferation in Pulmonary Arterial Hypertension via AKT/FOXO3A Axis. International Journal of Molecular Sciences. 2023; 24(7):6385. https://doi.org/10.3390/ijms24076385

Chicago/Turabian Style

He, Zhen, Teding Chang, Yu Chen, Hongjie Wang, Lei Dai, and Hesong Zeng. 2023. "PARM1 Drives Smooth Muscle Cell Proliferation in Pulmonary Arterial Hypertension via AKT/FOXO3A Axis" International Journal of Molecular Sciences 24, no. 7: 6385. https://doi.org/10.3390/ijms24076385

APA Style

He, Z., Chang, T., Chen, Y., Wang, H., Dai, L., & Zeng, H. (2023). PARM1 Drives Smooth Muscle Cell Proliferation in Pulmonary Arterial Hypertension via AKT/FOXO3A Axis. International Journal of Molecular Sciences, 24(7), 6385. https://doi.org/10.3390/ijms24076385

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