4.5 Article

Altered carnitine homeostasis is associated with decreased mitochondrial function and altered nitric oxide signaling in lambs with pulmonary hypertension

出版社

AMER PHYSIOLOGICAL SOC
DOI: 10.1152/ajplung.00247.2007

关键词

carnitine metabolism; oxidative stress

资金

  1. NATIONAL HEART, LUNG, AND BLOOD INSTITUTE [R01HL070061, R01HL067841, F32HL090198, R01HL060190, R01HL072123, R01HL061284] Funding Source: NIH RePORTER
  2. NHLBI NIH HHS [R01 HL072123, R01 HL067841, HL61284, HL70061, R01 HL070061, HL60190, F32 HL090198, R01 HL061284, HL72123, HL67841, R01 HL060190] Funding Source: Medline
  3. NICHD NIH HHS [T32 HD049303] Funding Source: Medline

向作者/读者索取更多资源

Utilizing aortopulmonary vascular graft placement in the fetal lamb, we have developed a model (shunt) of pulmonary hypertension that mimics congenital heart disease with increased pulmonary blood flow. Our previous studies have identified a progressive development of endothelial dysfunction in shunt lambs that is dependent, at least in part, on decreased nitric oxide (NO) signaling. The purpose of this study was to evaluate the possible role of a disruption in carnitine metabolism in shunt lambs and to determine the effect on NO signaling. Our data indicate that at 2 wk of age, shunt lambs have significantly reduced expression (P < 0.05) of the key enzymes in carnitine metabolism: carnitine palmitoyltransferases 1 and 2 as well as carnitine acetyltransferase (CrAT). In addition, we found that CrAT activity was inhibited due to increased nitration. Furthermore, free carnitine levels were significantly decreased whereas acylcarnitine levels were significantly higher in shunt lambs (P < 0.05). We also found that alterations in carnitine metabolism resulted in mitochondrial dysfunction, since shunt lambs had significantly decreased pyruvate, increased lactate, and a reduced pyruvate/lactate ratio. In pulmonary arterial endothelial cells cultured from juvenile lambs, we found that mild uncoupling of the mitochondria led to a decrease in cellular ATP levels and a reduction in both endothelial NO synthase-heat shock protein 90 (eNOS-HSP90) interactions and NO signaling. Similarly, in shunt lambs we found a loss of eNOS-HSP90 interactions that correlated with a progressive decrease in NO signaling. Our data suggest that mitochondrial dysfunction may play a role in the development of endothelial dysfunction and pulmonary hypertension and increased pulmonary blood flow.

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