Li Zhuowei, Carter Jacqueline D, Dailey Lisa A, Huang Yuh-Chin T
Center for Environmental Medicine, Asthma and Lung Biology, University of North Carolina, Chapel Hill, North Carolina 27599, USA.
Environ Health Perspect. 2004 Feb;112(2):201-6. doi: 10.1289/ehp.6477.
Exposure to excessive vanadium occurs in some occupations and with consumption of some dietary regimens for weight reduction and body building. Because vanadium is vasoactive, individuals exposed to excessive vanadium may develop adverse vascular effects. We have previously shown that vanadyl sulfate causes acute pulmonary vasoconstriction, which could be attributed in part to inhibition of nitric oxide production. In the present study we investigated whether NO inhibition was related to phosphorylation of endothelial nitric oxide synthase (eNOS). VOSO4 produced dose-dependent constriction of pulmonary arteries in isolated perfused lungs and pulmonary arterial rings and a right shift of the acetylcholine-dependent vasorelaxation curve. VOSO4 inhibited constitutive as well as A23187-stimulated NO production. Constitutive NO inhibition was accompanied by increased Thr495 (threonine at codon 495) phosphorylation of eNOS, which would inhibit eNOS activity. Thr495 phosphorylation of eNOS and inhibition of NO were partially reversed by pretreatment with calphostin C, a protein kinase C (PKC) inhibitor. There were no changes in Ser1177 (serine at codon 1177) or tyrosine phosphorylation of eNOS. These results indicate that VOSO4 induced acute pulmonary vasoconstriction that was mediated in part by the inhibition of endothelial NO production via PKC-dependent phosphorylation of Thr495 of eNOS. Exposure to excessive vanadium may contribute to pulmonary vascular diseases.
在某些职业中以及因食用某些用于减肥和健身的饮食方案时,会接触到过量的钒。由于钒具有血管活性,接触过量钒的个体可能会出现不良的血管效应。我们之前已经表明硫酸氧钒会引起急性肺血管收缩,这部分可归因于一氧化氮生成的抑制。在本研究中,我们调查了一氧化氮抑制是否与内皮型一氧化氮合酶(eNOS)的磷酸化有关。硫酸氧钒在离体灌注肺和肺动脉环中产生剂量依赖性的肺动脉收缩,并使乙酰胆碱依赖性血管舒张曲线右移。硫酸氧钒抑制组成型以及A23187刺激的一氧化氮生成。组成型一氧化氮抑制伴随着eNOS的苏氨酸495(第495位密码子的苏氨酸)磷酸化增加,这会抑制eNOS活性。用蛋白激酶C(PKC)抑制剂钙磷蛋白C预处理可部分逆转eNOS的苏氨酸495磷酸化和一氧化氮抑制。eNOS的丝氨酸1177(第1177位密码子的丝氨酸)或酪氨酸磷酸化没有变化。这些结果表明,硫酸氧钒诱导的急性肺血管收缩部分是由通过PKC依赖性磷酸化eNOS的苏氨酸495抑制内皮型一氧化氮生成介导的。接触过量钒可能导致肺血管疾病。