Ascorbic acid synthesis due to L-gulono-1,4-lactone oxidase expression enhances NO production in endothelial cells

被引:34
作者
Kim, Hyo Jung
Lee, Sang Il
Lee, Duk-Hee
Smith, Debra
jo, Hanong Jo
Schellhorn, Herb E.
Boo, Yong Chool [1 ]
机构
[1] Kyungpook Natl Univ, Sch Med, Dept Mol Med, 101 Dongindong 2 Ga, Taegu 700422, South Korea
[2] Kyungpook Natl Univ, Sch Med, Dept Prevent Med, Taegu 700422, South Korea
[3] Kyungpook Natl Univ, Sch Med, Hlth Promot Res Ctr, Taegu 700422, South Korea
[4] Georgia Tech, Wallace H Coulter Dept Biomed Engn, Atlanta, GA 30322 USA
[5] Emory Univ, Atlanta, GA 30322 USA
[6] McMaster Univ, Dept Biol, Hamilton, ON L8S 4K1, Canada
关键词
ascorbic acid; nitric oxide; L-gulono-1,4-lactone; L-gulono-1,4-lactone oxidase; endothelial cells;
D O I
10.1016/j.bbrc.2006.05.090
中图分类号
Q5 [生物化学]; Q7 [分子生物学];
学科分类号
071010 [生物化学与分子生物学]; 081704 [应用化学];
摘要
As a primary antioxidant, ascorbic acid (AA) provides beneficial effects for vascular health mitigating oxidative stress and endothelial dysfunction. However, the association of intracellular AA with NO production occurring inside the endothelial cells remains unclear. In the present study, we addressed this issue by increasing intracellular AA directly through de novo synthesis. To restore AA synthesis pathway, bovine aortic endothelial cells were transfected with the plasmid vector encoding L-gulono-1,4-lactone oxidase (GULO, EC 1.1.3.8), the missing enzyme converting L-gulono-1,4-lactone (GUL) to AA. Functional expression of GULO was verified by Western blotting and in vitro enzyme activity assay. GULO expression alone did not lead to AA synthesis but the supply of GUL resulted in a marked increase of intracellular AA. When the cells were stimulated with calcium ionophore, A23187, NO production was more active in the GULO-expressing cells supplied with GUL, in comparison with the cells without GULO expression or without GUL supply, indicating that intracellular AA regulated NO production. Enhancement of NO production by intracellular AA was further verified in aortic endothelial cells obtained from eNOS knockout mice that were cotransfected with eNOS and GULO constructs. GULO-dependent AA synthesis also elevated intracellular tetrahydrobiopterin content, implicating that this essential cofactor of endothelial nitric oxide synthase (eNOS) might mediate the AA effect. The present study strongly suggests that intracellular AA plays critical roles in vascular physiology through enhancing endothelial NO production. (c) 2006 Elsevier Inc. All rights reserved.
引用
收藏
页码:1657 / 1662
页数:6
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