Silent information regulator 1 modulator resveratrol increases brain lactate production and inhibits mitochondrial metabolism, whereas SRT1720 increases oxidative metabolism.

Journal: Journal of neuroscience research

Volume: 93

Issue: 7

Year of Publication: 2016

Affiliated Institutions:  Neuroscience Research Australia, Randwick, New South Wales, Australia. Florey Institute of Neuroscience and Mental Health, The University of Melbourne, Parkville, Victoria, Australia. Stem Cell Metabolism and Regenerative Medicine Group, Basic and Clinical Myology Laboratory, Department of Physiology, The University of Melbourne, Parkville, Victoria, Australia. Mark Wainwright Analytical Centre, The University of New South Wales, Randwick, New South Wales, Australia. Department of Physiology and Translational Neuroscience Facility, School of Medical Sciences, The University of New South Wales, Randwick, New South Wales, Australia.

Abstract summary 

Silent information regulators (SIRTs) have been shown to deacetylate a range of metabolic enzymes, including those in glycolysis and the Krebs cycle, and thus alter their activity. SIRTs require NAD(+) for their activity, linking cellular energy status to enzyme activity. To examine the impact of SIRT1 modulation on oxidative metabolism, this study tests the effect of ligands that are either SIRT-activating compounds (resveratrol and SRT1720) or SIRT inhibitors (EX527) on the metabolism of (13)C-enriched substrates by guinea pig brain cortical tissue slices with (13)C and (1)H nuclear magnetic resonance spectroscopy. Resveratrol increased lactate labeling but decreased incorporation of (13)C into Krebs cycle intermediates, consistent with effects on AMPK and inhibition of the F0/F1-ATPase. By testing with resveratrol that was directly applied to astrocytes with a Seahorse analyzer, increased glycolytic shift and increased mitochondrial proton leak resulting from interactions of resveratrol with the mitochondrial electron transport chain were revealed. SRT1720, by contrast, stimulated incorporation of (13)C into Krebs cycle intermediates and reduced incorporation into lactate, although the inhibitor EX527 paradoxically also increased Krebs cycle (13)C incorporation. In summary, the various SIRT1 modulators show distinct acute effects on oxidative metabolism. The strong effects of resveratrol on the mitochondrial respiratory chain and on glycolysis suggest that caution should be used in attempts to increase bioavailability of this compound in the CNS.

Authors & Co-authors:  Rowlands Benjamin D BD Lau Chew Ling CL Ryall James G JG Thomas Donald S DS Klugmann Matthias M Beart Philip M PM Rae Caroline D CD

Study Outcome 

Source Link: Visit source

Statistics
Citations : 
Authors :  7
Identifiers
Doi : 10.1002/jnr.23570
SSN : 1097-4547
Study Population
Male,Female
Mesh Terms
Animals
Other Terms
EX-527;acetylation;sirtuin
Study Design
Study Approach
Country of Study
Guinea
Publication Country
United States