Potential role of cartilage oligomeric matrix protein in the modulation of pulmonary arterial smooth muscle superoxide by hypoxia.

Q4 Medicine
Colon and Rectum Pub Date : 2019-11-01 Epub Date: 2019-08-07 DOI:10.1152/ajplung.00080.2018
Hang Yu, Norah Alruwaili, Bing Hu, Melissa R Kelly, Bin Zhang, Dong Sun, Michael S Wolin
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引用次数: 12

Abstract

Changes in reactive oxygen species and extracellular matrix seem to participate in pulmonary hypertension development. Because we recently reported evidence for chronic hypoxia decreasing expression of cartilage oligomeric matrix protein (COMP) and evidence for this controlling loss of pulmonary arterial smooth muscle bone morphogenetic protein receptor-2 (BMPR2) and contractile phenotype proteins, we examined if changes in superoxide metabolism could be an important factor in a bovine pulmonary artery (BPA), organoid cultured under hypoxia for 48 h model. Hypoxia (3% O2) caused a depletion of COMP in BPA, but not in bovine coronary arteries. Knockdown of COMP by small-interfering RNA (siRNA) increased BPA levels of mitochondrial and extra-mitochondrial superoxide detected by MitoSOX and dihydroethidium (DHE) HPLC products. COMP siRNA-treated BPA showed reduced levels of SOD2 and SOD3 and increased levels of NADPH oxidases NOX2 and NOX4. Hypoxia increased BPA levels of MitoSOX-detected superoxide and caused changes in NOX2 and SOD2 expression similar to COMP siRNA, and exogenous COMP (0.5 μM) prevented the effects of hypoxia. In the presence of COMP, BMPR2 siRNA-treated BPA showed increases in superoxide detected by MitoSOX and depletion of SOD2. Superoxide scavengers (0.5 μM TEMPO or mitoTEMPO) maintained the expression of contractile phenotype proteins calponin and SM22α decreased by 48 h hypoxia (1% O2). Adenoviral delivery of BMPR2 to rat pulmonary artery smooth muscle cells prevented the depletion of calponin and SM22α by COMP siRNA. Thus, COMP regulation of BMPR2 appears to have an important role in controlling hypoxia-elicited changes in BPA superoxide and its potential regulation of contractile phenotype proteins.

软骨寡聚基质蛋白在缺氧调节肺动脉平滑肌超氧化物中的潜在作用
活性氧和细胞外基质的变化似乎参与了肺动脉高压的形成。由于我们最近报道了慢性缺氧会降低软骨低聚基质蛋白(COMP)表达的证据,以及这种控制肺动脉平滑肌骨形态发生蛋白受体-2(BMPR2)和收缩表型蛋白损失的证据,我们研究了在缺氧条件下培养 48 小时的牛肺动脉(BPA)类器官模型中,超氧化物代谢的变化是否是一个重要因素。缺氧(3% O2)会导致 BPA 中 COMP 的耗竭,但不会导致牛冠状动脉中 COMP 的耗竭。用小干扰 RNA(siRNA)敲除 COMP 会增加 BPA 线粒体和线粒体外超氧化物的水平,通过 MitoSOX 和双氢乙锭(DHE)HPLC 产物可检测到超氧化物。COMP siRNA 处理的双酚 A 显示 SOD2 和 SOD3 水平降低,NADPH 氧化酶 NOX2 和 NOX4 水平升高。缺氧会增加 BPA 的 MitoSOX 检测到的超氧化物水平,并导致 NOX2 和 SOD2 表达发生与 COMP siRNA 相似的变化,而外源 COMP(0.5 μM)可防止缺氧的影响。在 COMP 存在的情况下,BMPR2 siRNA 处理的 BPA 显示出 MitoSOX 检测到的超氧化物增加和 SOD2 的耗竭。超氧化物清除剂(0.5 μM TEMPO 或 mitoTEMPO)维持了收缩表型蛋白 calponin 和 SM22α 的表达,但在缺氧 48 小时(1% O2)后,其表达量有所下降。大鼠肺动脉平滑肌细胞通过腺病毒转运 BMPR2 可防止 COMP siRNA 对钙调蛋白和 SM22α 的消耗。因此,COMP对BMPR2的调控似乎在控制缺氧引起的BPA超氧化物变化及其对收缩表型蛋白的潜在调控中起着重要作用。
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来源期刊
Colon and Rectum
Colon and Rectum Medicine-Gastroenterology
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期刊介绍: Côlon & Rectum est une revue de formation continue dans le champ pathologique des maladies du côlon, du rectum et de l"anus. Ses domaines de veille scientifique (données publiées et factuelles) et d"enseignement (dossiers thématiques complets) concernent les cancers, les maladies inflammatoires intestinales, les troubles fonctionnels intestinaux et les maladies proctologiques. L"expertise chirurgicale, endoscopique et proctologique, est largement développée à des fins de pratique clinique (fiches techniques). La revue intéressera l"ensemble des acteurs de santé impliqués dans la prise en charge des malades souffrant de troubles colorectaux.
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