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Age- and Genotype-Specific Effects of the Angiotensin-Converting Enzyme Inhibitor Lisinopril on Mitochondrial and Metabolic Parameters in .

Citation
Ederer, K. A., et al. “Age- And Genotype-Specific Effects Of The Angiotensin-Converting Enzyme Inhibitor Lisinopril On Mitochondrial And Metabolic Parameters In .”. International Journal Of Molecular Sciences.
Center University of Alabama at Birmingham
Author Karis A Ederer, Kelly Jin, Sarah Bouslog, Lu Wang, Gregory S Gorman, Glenn C Rowe, Peter Abadir, Daniel Raftery, Douglas Moellering, Daniel Promislow, Patricia Jumbo-Lucioni, Maria De Luca
Keywords aging, angiotensin-converting enzyme inhibitors, genetic background, nutrient metabolism, nutritional stress
Abstract

The angiotensin-converting enzyme (ACE) is a peptidase that is involved in the synthesis of Angiotensin II, the bioactive component of the renin-angiotensin system. A growing body of literature argues for a beneficial impact of ACE inhibitors (ACEi) on age-associated metabolic disorders, mediated by cellular changes in reactive oxygen species (ROS) that improve mitochondrial function. Yet, our understanding of the relationship between ACEi therapy and metabolic parameters is limited. Here, we used three genetically diverse strains of to show that Lisinopril treatment reduces thoracic ROS levels and mitochondrial respiration in young flies, and increases mitochondrial content in middle-aged flies. Using untargeted metabolomics analysis, we also showed that Lisinopril perturbs the thoracic metabolic network structure by affecting metabolic pathways involved in glycogen degradation, glycolysis, and mevalonate metabolism. The Lisinopril-induced effects on mitochondrial and metabolic parameters, however, are genotype-specific and likely reflect the drug's impact on nutrient-dependent fitness traits. Accordingly, we found that Lisinopril negatively affects survival under nutrient starvation, an effect that can be blunted by genotype and age in a manner that partially mirrors the drug-induced changes in mitochondrial respiration. In conclusion, our results provide novel and important insights into the role of ACEi in cellular metabolism.

Year of Publication
2018
Journal
International journal of molecular sciences
Volume
19
Issue
11
Date Published
10/2018
ISSN Number
1422-0067
DOI
10.3390/ijms19113351
Alternate Journal
Int J Mol Sci
PMID
30373167
PMCID
PMC6274988
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