|
|
||||||||
VASCULAR BIOLOGY
Department of Physiology, Loyola University Chicago, Stritch School of Medicine, Maywood, Illinois 60153
Submitted 22 April 2003 ; accepted in final form 16 September 2003
Although nitric oxide (NO) is a known modulator of cell respiration in vascular endothelium, the presence of a mitochondria-specific nitric oxide synthase (mtNOS) in these cells is still a controversial issue. We have used laser scanning confocal microscopy in combination with the NO-sensitive fluorescent dye DAF-2 to monitor changes in NO production by mitochondria of calf vascular endothelial (CPAE) cells. Cells were loaded with the membrane-permeant NO-sensitive dye 4,5-diaminofluorescein (DAF-2) diacetate and subsequently permeabilized with digitonin to remove cytosolic DAF-2 to allow measurements of NO production in mitochondria ([NO]mt). Stimulation of mitochondrial Ca2+ uptake by exposure to different cytoplasmic Ca2+ concentrations (1, 2, and 5 µM) resulted in a dose-dependent increase of NO production by mitochondria. This increase of [NO]mt was sensitive to the NOS antagonist L-N5-(1-iminoethyl)ornithine and the calmodulin antagonist calmidazolium (R-24571), demonstrating the endogenous origin of NO synthesis and its calmodulin dependence. Collapsing the mitochondrial membrane potential with the protonophore FCCP or blocking the mitochondrial Ca2+ uniporter with ruthenium red, as well as blocking the respiratory chain with antimycin A in combination with oligomycin, inhibited mitochondrial NO production. Addition of the NO donor spermine NONOate caused a profound increase in DAF-2 fluorescence that was not affected by either of these treatments. The mitochondrial origin of the DAF-2 signals was confirmed by colocalization with the mitochondrial marker MitoTracker Red and by the observation that disruption of caveolae (where cytoplasmic NOS is localized) formation with methyl-
-cyclodextrin did not prevent the increase of DAF-2 fluorescence. The activation of mitochondrial calcium uptake stimulates mtNOS phosphorylation (at Ser-1177) which was prevented by FCCP. The data demonstrate that stimulation of mitochondrial Ca2+ uptake activates NO production in mitochondria of CPAE cells. This indicates the presence of a mitochondria-specific NOS that can provide a fast local modulatory effect of NO on cell respiration, membrane potential, and apoptosis.
nitric oxide; nitric oxide synthase; calcium; endothelium; mitochondria
This article has been cited by other articles:
![]() |
A. E. Loot, R. Popp, B. Fisslthaler, J. Vriens, B. Nilius, and I. Fleming Role of cytochrome P450-dependent transient receptor potential V4 activation in flow-induced vasodilatation Cardiovasc Res, December 1, 2008; 80(3): 445 - 452. [Abstract] [Full Text] [PDF] |
||||
![]() |
T. Inoue, Y. Suzuki, T. Yoshimaru, and C. Ra Nitric oxide protects mast cells from activation-induced cell death: the role of the phosphatidylinositol-3 kinase-Akt-endothelial nitric oxide synthase pathway J. Leukoc. Biol., May 1, 2008; 83(5): 1218 - 1229. [Abstract] [Full Text] [PDF] |
||||
![]() |
H. B. Leavesley, L. Li, K. Prabhakaran, J. L. Borowitz, and G. E. Isom Interaction of Cyanide and Nitric Oxide with Cytochrome c Oxidase: Implications for Acute Cyanide Toxicity Toxicol. Sci., January 1, 2008; 101(1): 101 - 111. [Abstract] [Full Text] [PDF] |
||||
![]() |
D. X. Zhang and D. D. Gutterman Mitochondrial reactive oxygen species-mediated signaling in endothelial cells Am J Physiol Heart Circ Physiol, May 1, 2007; 292(5): H2023 - H2031. [Abstract] [Full Text] [PDF] |
||||
![]() |
S. M. Davidson and M. R. Duchen Endothelial Mitochondria: Contributing to Vascular Function and Disease Circ. Res., April 27, 2007; 100(8): 1128 - 1141. [Abstract] [Full Text] [PDF] |
||||
![]() |
Z. Han, Y.-R. Chen, C. I. Jones III, G. Meenakshisundaram, J. L. Zweier, and B. R. Alevriadou Shear-induced reactive nitrogen species inhibit mitochondrial respiratory complex activities in cultured vascular endothelial cells Am J Physiol Cell Physiol, March 1, 2007; 292(3): C1103 - C1112. [Abstract] [Full Text] [PDF] |
||||
![]() |
R. R. Nazarewicz, W. J. Zenebe, A. Parihar, S. K. Larson, E. Alidema, J. Choi, and P. Ghafourifar Tamoxifen Induces Oxidative Stress and Mitochondrial Apoptosis via Stimulating Mitochondrial Nitric Oxide Synthase Cancer Res., February 1, 2007; 67(3): 1282 - 1290. [Abstract] [Full Text] [PDF] |
||||
![]() |
D. Freyssenet Energy sensing and regulation of gene expression in skeletal muscle J Appl Physiol, February 1, 2007; 102(2): 529 - 540. [Abstract] [Full Text] [PDF] |
||||
![]() |
D. L. Hoffman, J. D. Salter, and P. S. Brookes Response of mitochondrial reactive oxygen species generation to steady-state oxygen tension: implications for hypoxic cell signaling Am J Physiol Heart Circ Physiol, January 1, 2007; 292(1): H101 - H108. [Abstract] [Full Text] [PDF] |
||||
![]() |
J. Gutierrez, S. W. Ballinger, V. M. Darley-Usmar, and A. Landar Free Radicals, Mitochondria, and Oxidized Lipids: The Emerging Role in Signal Transduction in Vascular Cells Circ. Res., October 27, 2006; 99(9): 924 - 932. [Abstract] [Full Text] [PDF] |
||||
![]() |
S. M. Davidson and M. R. Duchen Effects of NO on mitochondrial function in cardiomyocytes: Pathophysiological relevance Cardiovasc Res, July 1, 2006; 71(1): 10 - 21. [Abstract] [Full Text] [PDF] |
||||
![]() |
M. Shibata, K. Qin, S. Ichioka, and A. Kamiya Vascular wall energetics in arterioles during nitric oxide-dependent and -independent vasodilation J Appl Physiol, June 1, 2006; 100(6): 1793 - 1798. [Abstract] [Full Text] [PDF] |
||||
![]() |
R. C. Manser and F. D. Houghton Ca2+-linked upregulation and mitochondrial production of nitric oxide in the mouse preimplantation embryo J. Cell Sci., May 15, 2006; 119(10): 2048 - 2055. [Abstract] [Full Text] [PDF] |
||||
![]() |
M. Shibata, S. Ichioka, and A. Kamiya Nitric oxide modulates oxygen consumption by arteriolar walls in rat skeletal muscle Am J Physiol Heart Circ Physiol, December 1, 2005; 289(6): H2673 - H2679. [Abstract] [Full Text] [PDF] |
||||
![]() |
E. N. Dedkova and L. A. Blatter Modulation of mitochondrial Ca2+ by nitric oxide in cultured bovine vascular endothelial cells Am J Physiol Cell Physiol, October 1, 2005; 289(4): C836 - C845. [Abstract] [Full Text] [PDF] |
||||
![]() |
J. W. Zmijewski, D. R. Moellering, C. L. Goffe, A. Landar, A. Ramachandran, and V. M. Darley-Usmar Oxidized LDL induces mitochondrially associated reactive oxygen/nitrogen species formation in endothelial cells Am J Physiol Heart Circ Physiol, August 1, 2005; 289(2): H852 - H861. [Abstract] [Full Text] [PDF] |
||||
| HOME | HELP | FEEDBACK | SUBSCRIPTIONS | ARCHIVE | SEARCH | TABLE OF CONTENTS |
| Visit Other APS Journals Online |