首页> 外文期刊>Cardiovascular Research >Prolonged hypoxia augments L-citrulline transport by System A in the newborn piglet pulmonary circulation.
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Prolonged hypoxia augments L-citrulline transport by System A in the newborn piglet pulmonary circulation.

机译:长时间缺氧会增加系统A在新生仔猪肺循环中的L-瓜氨酸转运。

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Pulmonary arterial endothelial cells (PAECs) express the enzymes needed for generation of l-arginine from intracellular l-citrulline but do not express the enzymes needed for de novo l-citrulline synthesis. Hence, l-citrulline levels in PAECs are dependent on l-citrulline transport. Once generated, l-arginine can be converted to l-citrulline and nitric oxide (NO) by the enzyme NO synthase. We sought to determine whether hypoxia, a condition aetiologically linked to pulmonary hypertension, alters the transport of l-citrulline and the expression of the sodium-coupled neutral amino acid transporters (SNATs) in PAECs from newborn piglets.PAECs isolated from newborn piglets were cultured under normoxic and hypoxic conditions and used to measure SNAT1, 2, 3, and 5 protein expression and (14)C-l-citrulline uptake. SNAT1 protein expression was increased, while SNAT2, SNAT3, and SNAT5 expression was unaltered in hypoxic PAECs. (14)C-l-citrulline uptake was increased in hypoxic PAECs. Studies with inhibitors of System A (SNAT1/2) and System N (SNAT3/5) revealed that the increased (14)C-l-citrulline uptake was largely due to System A-mediated transport. Additional studies were performed to evaluate SNAT protein expression and l-citrulline levels in lungs of piglets with chronic hypoxia-induced pulmonary hypertension and comparable age controls. Lungs from piglets raised in chronic hypoxia exhibited greater SNAT1 expression and higher l-citrulline levels than lungs from controls.Increased SNAT1 expression and the concomitant enhanced ability to transport l-citrulline in PAECs could represent an important regulatory mechanism to counteract NO signalling impairments known to occur during the development of chronic hypoxia-induced pulmonary hypertension in newborns.
机译:肺动脉内皮细胞(PAEC)表达从细胞内1-瓜氨酸生成1-精氨酸所需的酶,但不表达从头1-瓜氨酸合成所需的酶。因此,PAEC中的瓜氨酸水平取决于瓜氨酸的转运。一旦产生,1-精氨酸可通过NO合酶被转化为1-瓜氨酸和一氧化氮(NO)。我们试图确定缺氧是一种与肺动脉高压在病因学上相关的疾病,它是否改变了新生仔猪PAEC中的瓜氨酸的转运和钠偶联中性氨基酸转运蛋白(SNATs)的表达。在常氧和低氧条件下,用于测量SNAT1、2、3和5蛋白表达和(14)Cl-瓜氨酸摄取。在低氧PAEC中,SNAT1蛋白表达增加,而SNAT2,SNAT3和SNAT5表达不变。 (14)低氧PAECs中C-1-瓜氨酸的摄取增加。用系统A(SNAT1 / 2)和系统N(SNAT3 / 5)的抑制剂进行的研究表明,增加的(14)C-1-瓜氨酸摄取主要是由于系统A介导的转运。进行了其他研究,以评估慢性低氧引起的肺动脉高压和可比较的年龄对照的仔猪肺中SNAT蛋白表达和l-瓜氨酸水平。慢性缺氧引起的仔猪的肺部表现出比对照组肺部更高的SNAT1表达和更高的L-瓜氨酸水平.SNAT1表达的增加以及PAEC中L-瓜氨酸的转运能力增强可能是抵抗已知的NO信号传导障碍的重要调控机制。发生在新生儿慢性缺氧引起的肺动脉高压。

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