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The Krebs cycle and mitochondrial mass are early victims of endothelial dysfunction: proteomic approach.
- Source :
-
The American journal of pathology [Am J Pathol] 2009 Jan; Vol. 174 (1), pp. 34-43. Date of Electronic Publication: 2008 Dec 18. - Publication Year :
- 2009
-
Abstract
- Endothelial cell dysfunction is associated with bioavailable nitric oxide deficiency and an excessive generation of reactive oxygen species. We modeled this condition by chronically inhibiting nitric oxide generation with subpressor doses of N(G)-monomethyl-L-arginine (L-NMMA) in C57B6 and Tie-2/green fluorescent protein mouse strains. L-NMMA-treated mice exhibited a slight reduction in vasorelaxation ability, as well as detectable abnormalities in soluble adhesion molecules (soluble intercellular adhesion molecule-1 and vascular cellular adhesion molecule-1, and matrix metalloproteinase 9), which represent surrogate indicators of endothelial dysfunction. Proteomic analysis of the isolated microvasculature using 2-dimensional gel electrophoresis and matrix-assisted laser desorption/ionization time-of-flight mass spectroscopy revealed abnormal expression of a cluster of mitochondrial enzymes, which was confirmed using immunodetection. Aconitase-2 and enoyl-CoA-hydratase-1 expression levels were decreased in L-NMMA-treated animals; this phenotype was absent in nitric oxide synthase-1 and -3 knockout mice. Depletion of aconitase-2 and enoyl-CoA-hydratase-1 resulted in the inhibition of the Krebs cycle and enhanced pyruvate shunting toward the glycolytic pathway. To assess mitochondrial mass in vivo, co-localization of green fluorescent protein and MitoTracker fluorescence was detected by intravital microscopy. Quantitative analysis of fluorescence intensity showed that L-NMMA-treated animals exhibited lower fluorescence of MitoTracker in microvascular endothelia as a result of reduced mitochondrial mass. These findings provide conclusive and unbiased evidence that mitochondriopathy represents an early manifestation of endothelial dysfunction, shifting cell metabolism toward "metabolic hypoxia" through the selective depletion of both aconitase-2 and enoyl-CoA-hydratase-1. These findings may contribute to an early preclinical diagnosis of endothelial dysfunction.
- Subjects :
- Aconitate Hydratase metabolism
Animals
Enoyl-CoA Hydratase metabolism
Enzyme Inhibitors toxicity
Hypertension chemically induced
Hypertension metabolism
Immunoblotting
Male
Mice
Mice, Inbred C57BL
Mice, Knockout
Microvessels metabolism
Microvessels pathology
Mitochondria metabolism
Nitric Oxide antagonists & inhibitors
Oxidative Stress physiology
Reverse Transcriptase Polymerase Chain Reaction
Spectrometry, Mass, Matrix-Assisted Laser Desorption-Ionization
Vascular Diseases metabolism
omega-N-Methylarginine toxicity
Citric Acid Cycle physiology
Endothelial Cells metabolism
Endothelial Cells pathology
Mitochondria pathology
Proteomics
Subjects
Details
- Language :
- English
- ISSN :
- 1525-2191
- Volume :
- 174
- Issue :
- 1
- Database :
- MEDLINE
- Journal :
- The American journal of pathology
- Publication Type :
- Academic Journal
- Accession number :
- 19095954
- Full Text :
- https://doi.org/10.2353/ajpath.2009.080650