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Published on: May 16, 2021
Multiple AMPK activators inhibit l-carnitine uptake in C2C12 skeletal muscle myotubes
Andy Shaw1, Stewart Jeromson1, Kenneth R Watterson2
1Physiology, Exercise and Nutrition Research Group, Faculty of Health Sciences and Sport, University of Stirling, Stirling, United Kingdom.
Abstract:
Mutations in the gene that encodes the principal l-carnitine transporter, OCTN2, can lead to a reduced intracellular l-carnitine pool and the disease Primary Carnitine Deficiency. l-Carnitine supplementation is used therapeutically to increase intracellular l-carnitine. As AMPK and insulin regulate fat metabolism and substrate uptake, we hypothesized that AMPK-activating compounds and insulin would increase l-carnitine uptake in C2C12 myotubes. The cells express all three OCTN transporters at the mRNA level, and immunohistochemistry confirmed expression at the protein level. Contrary to our hypothesis, despite significant activation of PKB and 2DG uptake, insulin did not increase l-carnitine uptake at 100 nM. However, l-carnitine uptake was modestly increased at a dose of 150 nM insulin. A range of AMPK activators that increase intracellular calcium content [caffeine (10 mM, 5 mM, 1 mM, 0.5 mM), A23187 (10 μM)], inhibit mitochondrial function [sodium azide (75 μM), rotenone (1 μM), berberine (100 μM), DNP (500 μM)], or directly activate AMPK [AICAR (250 μM)] were assessed for their ability to regulate l-carnitine uptake. All compounds tested significantly inhibited l-carnitine uptake. Inhibition by caffeine was not dantrolene (10 μM) sensitive despite dantrolene inhibiting caffeine-mediated calcium release. Saturation curve analysis suggested that caffeine did not competitively inhibit l-carnitine transport. To assess the potential role of AMPK in this process, we assessed the ability of the AMPK inhibitor Compound C (10 μM) to rescue the effect of caffeine. Compound C offered a partial rescue of l-carnitine uptake with 0.5 mM caffeine, suggesting that AMPK may play a role in the inhibitory effects of caffeine. However, caffeine likely inhibits l-carnitine uptake by alternative mechanisms independently of calcium release. PKA activation or direct interference with transporter function may play a role.
Insights
Insulin and AMPK activators were tested for their effect on l-carnitine uptake in muscle cells. Most compounds inhibited uptake, suggesting complex regulation beyond simple activation.
Area of Science:
- Cellular and Molecular Physiology
- Nutritional Biochemistry
- Metabolic Regulation
Background:
- Primary Carnitine Deficiency results from reduced intracellular l-carnitine due to OCTN2 transporter mutations.
- l-Carnitine supplementation is a therapeutic strategy to restore intracellular l-carnitine levels.
- AMP-activated protein kinase (AMPK) and insulin are key regulators of cellular metabolism and nutrient transport.
Purpose of the Study:
- To investigate the effects of insulin and AMPK-activating compounds on l-carnitine uptake in C2C12 myotubes.
- To determine if insulin or AMPK activation can enhance cellular l-carnitine levels.
- To elucidate the mechanisms underlying the regulation of OCTN2-mediated l-carnitine transport.
Main Methods:
- C2C12 myotubes were treated with varying concentrations of insulin and a panel of AMPK activators (caffeine, A23187, sodium azide, rotenone, berberine, DNP, AICAR).
- l-Carnitine uptake was measured using radiolabeled l-carnitine.
- Immunohistochemistry confirmed OCTN transporter expression at the protein level.
- Experiments included saturation curve analysis and the use of AMPK inhibitor Compound C.
Main Results:
- Insulin showed a modest increase in l-carnitine uptake only at a high concentration (150 nM).
- All tested AMPK activators significantly inhibited l-carnitine uptake, contrary to the initial hypothesis.
- Caffeine's inhibition was independent of calcium release and not competitive, while Compound C partially rescued caffeine's inhibitory effect, suggesting a role for AMPK.
Conclusions:
- Insulin and AMPK activators do not enhance l-carnitine uptake in C2C12 myotubes as hypothesized.
- AMPK activation appears to inhibit, rather than promote, l-carnitine uptake, possibly through mechanisms independent of calcium signaling.
- Further research is needed to explore alternative pathways, such as PKA activation or direct transporter interference, in regulating l-carnitine transport.
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