转录组
医学
肺
下调和上调
基因敲除
缺氧(环境)
基因表达谱
癌症研究
内科学
基因表达
基因
生物
化学
遗传学
有机化学
氧气
作者
Jason Hong,Lejla Medzikovic,Wasila Sun,Brenda Wong,Grégoire Ruffenach,Christopher J. Rhodes,Adam J. Brownstein,Lloyd L. Liang,Laila Aryan,Min Li,Arjun Vadgama,Zeyneb Kurt,Tae‐Hwi Schwantes‐An,Elizabeth A. Mickler,Stefan Gräf,Mélanie Eyries,Katie A. Lutz,Michael W. Pauciulo,Richard C. Trembath,Frédéric Perros
出处
期刊:Circulation
[Lippincott Williams & Wilkins]
日期:2024-08-22
卷期号:150 (16): 1268-1287
被引量:4
标识
DOI:10.1161/circulationaha.124.069864
摘要
BACKGROUND: Integrative multiomics can elucidate pulmonary arterial hypertension (PAH) pathobiology, but procuring human PAH lung samples is rare. METHODS: We leveraged transcriptomic profiling and deep phenotyping of the largest multicenter PAH lung biobank to date (96 disease and 52 control) by integration with clinicopathologic data, genome-wide association studies, Bayesian regulatory networks, single-cell transcriptomics, and pharmacotranscriptomics. RESULTS: We identified 2 potentially protective gene network modules associated with vascular cells, and we validated ASPN , coding for asporin, as a key hub gene that is upregulated as a compensatory response to counteract PAH. We found that asporin is upregulated in lungs and plasma of multiple independent PAH cohorts and correlates with reduced PAH severity. We show that asporin inhibits proliferation and transforming growth factor–β/phosphorylated SMAD2/3 signaling in pulmonary artery smooth muscle cells from PAH lungs. We demonstrate in Sugen-hypoxia rats that ASPN knockdown exacerbated PAH and recombinant asporin attenuated PAH. CONCLUSIONS: Our integrative systems biology approach to dissect the PAH lung transcriptome uncovered asporin as a novel protective target with therapeutic potential in PAH.
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