ArticleJournal of cellular and molecular medicine2021
LncRNA PAXIP1-AS1 fosters the pathogenesis of pulmonary arterial hypertension via ETS1/WIPF1/RhoA axis.
Article in Journal of cellular and molecular medicine, 2021. The graph could read no effect estimate from its abstract, so it casts no vote on the map. Cited by 15 papers.
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Who cites it
15 citing papers in PubMed, 23 citations in OpenAlex.
- Pulmonary Hypertension Molecular Switch: HIF Signaling Pathway.Pulmonary circulation · 2026Review
- Review
- Editorial: Exploring the role of epigenetic modifications in pulmonary vascular disease pathogenesis.Frontiers in medicine · 2025Article
- Roles of LncRNAs in the Pathogenesis of Pulmonary Hypertension.Reviews in cardiovascular medicine · 2024Review
- Article
- Astragaloside IV restrains pyroptosis and fibrotic development of pulmonary artery smooth muscle cells to ameliorate pulmonary artery hypertension through the PHD2/HIF1α signaling pathway.BMC pulmonary medicine · 2023Article
- Unraveling the epigenetic landscape of pulmonary arterial hypertension: implications for personalized medicine development.Journal of translational medicine · 2023Review
- LncRNA INPP5F ameliorates stress-induced hypertension via the miR-335/Cttn axis in rostral ventrolateral medulla.CNS neuroscience & therapeutics · 2023Article
- The HOXD9-mediated PAXIP1-AS1 regulates gastric cancer progression through PABPC1/PAK1 modulation.Cell death & disease · 2023Article
- lncRNA-TCONS_00008552 expression in patients with pulmonary arterial hypertension due to congenital heart disease.PloS one · 2023Article
- Identification ofInternational journal of molecular sciences · 2022Article
- The Landscape of Noncoding RNA in Pulmonary Hypertension.Biomolecules · 2022Review
- Comprehensive analysis of the expression of N6-methyladenosine RNA methylation regulators in pulmonary artery hypertension.Frontiers in genetics · 2022Article
- LncRNA PAXIP1-AS1 fosters the pathogenesis of pulmonary arterial hypertension via ETS1/WIPF1/RhoA axis.Journal of cellular and molecular medicine · 2021Article
- The Active Compounds and Therapeutic Target ofFrontiers in medicine · 2021Review
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Authors and funding
4 authors at 1 institution in 1 country.
Funding
No grant is acknowledged in the PubMed record.
Abstract
Pulmonary arterial hypertension (PAH) is a life-threatening disease featured with elevated pulmonary vascular resistance and progressive pulmonary vascular remodelling. It has been demonstrated that lncRNA PAXIP1-AS1 could influence the transcriptome in PAH. However, the exact molecular mechanism of PAXIP1-AS1 in PAH pathogenesis remains largely unknown. In this study, in vivo rat PAH model was established by monocrotaline (MCT) induction and hypoxia was used to induce in vitro PAH model using human pulmonary artery smooth muscle cells (hPASMCs). Histological examinations including H&E, Masson's trichrome staining and immunohistochemistry were subjected to evaluate the pathological changes of lung tissues. Expression patterns of PAXIP1-AS1 and RhoA were assessed using qRT-PCR and Western blotting, respectively. CCK-8, BrdU assay and immunofluorescence of Ki67 were performed to measure the cell proliferation. Wound healing and transwell assays were employed to evaluate the capacity of cell migration. Dual-luciferase reporter assay, co-immunoprecipitation, RIP and CHIP assays were employed to verify the PAXIP1-AS1/ETS1/WIPF1/RhoA regulatory network. It was found that the expression of PAXIP1-AS1 and RhoA was remarkably higher in both lung tissues and serum of MCT-induced PAH rats, as well as in hypoxia-induced hPASMCs. PAXIP1-AS1 knockdown remarkably suppressed hypoxia-induced cell viability and migration of hPASMCs. PAXIP1-AS1 positively regulated WIPF1 via recruiting transcriptional factor ETS1, of which knockdown reversed PAXIP1-AS1-mediated biological functions. Co-immunoprecipitation validated the WIPF1/RhoA interaction. In vivo experiments further revealed the role of PAXIP1-AS1 in PAH pathogenesis. In summary, lncRNA PAXIP1-AS1 promoted cell viability and migration of hPASMCs via ETS1/WIPF1/RhoA, which might provide a potential therapeutic target for PAH treatment.
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