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Identification of a novel malonyl-CoA IC(50) for CPT-I: implications for predicting in vivo fatty acid oxidation rates.

Publication ,  Journal Article
Smith, BK; Perry, CGR; Koves, TR; Wright, DC; Smith, JC; Neufer, PD; Muoio, DM; Holloway, GP
Published in: Biochem J
November 15, 2012

Published values regarding the sensitivity (IC(50)) of CPT-I (carnitine palmitoyltransferase I) to M-CoA (malonyl-CoA) inhibition in isolated mitochondria are inconsistent with predicted in vivo rates of fatty acid oxidation. Therefore we have re-examined M-CoA inhibition kinetics under various P-CoA (palmitoyl-CoA) concentrations in both isolated mitochondria and PMFs (permeabilized muscle fibres). PMFs have an 18-fold higher IC(50) (0.61 compared with 0.034 μM) in the presence of 25 μM P-CoA and a 13-fold higher IC(50) (6.3 compared with 0.49 μM) in the presence of 150 μM P-CoA compared with isolated mitochondria. M-CoA inhibition kinetics determined in PMFs predicts that CPT-I activity is inhibited by 33% in resting muscle compared with >95% in isolated mitochondria. Additionally, the ability of M-CoA to inhibit CPT-I appears to be dependent on P-CoA concentration, as the relative inhibitory capacity of M-CoA is decreased with increasing P-CoA concentrations. Altogether, the use of PMFs appears to provide an M-CoA IC(50) that better reflects the predicted in vivo rates of fatty acid oxidation. These findings also demonstrate that the ratio of [P-CoA]/[M-CoA] is critical for regulating CPT-I activity and may partially rectify the in vivo disconnect between M-CoA content and CPT-I flux within the context of exercise and Type 2 diabetes.

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Published In

Biochem J

DOI

EISSN

1470-8728

Publication Date

November 15, 2012

Volume

448

Issue

1

Start / End Page

13 / 20

Location

England

Related Subject Headings

  • Rats, Sprague-Dawley
  • Rats
  • Physical Conditioning, Animal
  • Palmitoyl Coenzyme A
  • Oxygen Consumption
  • Oxidation-Reduction
  • Muscle, Skeletal
  • Muscle Fibers, Slow-Twitch
  • Mitochondria, Muscle
  • Malonyl Coenzyme A
 

Citation

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Smith, B. K., Perry, C. G. R., Koves, T. R., Wright, D. C., Smith, J. C., Neufer, P. D., … Holloway, G. P. (2012). Identification of a novel malonyl-CoA IC(50) for CPT-I: implications for predicting in vivo fatty acid oxidation rates. Biochem J, 448(1), 13–20. https://doi.org/10.1042/BJ20121110
Smith, Brennan K., Christopher G. R. Perry, Timothy R. Koves, David C. Wright, Jeffrey C. Smith, P Darrell Neufer, Deborah M. Muoio, and Graham P. Holloway. “Identification of a novel malonyl-CoA IC(50) for CPT-I: implications for predicting in vivo fatty acid oxidation rates.Biochem J 448, no. 1 (November 15, 2012): 13–20. https://doi.org/10.1042/BJ20121110.
Smith BK, Perry CGR, Koves TR, Wright DC, Smith JC, Neufer PD, et al. Identification of a novel malonyl-CoA IC(50) for CPT-I: implications for predicting in vivo fatty acid oxidation rates. Biochem J. 2012 Nov 15;448(1):13–20.
Smith, Brennan K., et al. “Identification of a novel malonyl-CoA IC(50) for CPT-I: implications for predicting in vivo fatty acid oxidation rates.Biochem J, vol. 448, no. 1, Nov. 2012, pp. 13–20. Pubmed, doi:10.1042/BJ20121110.
Smith BK, Perry CGR, Koves TR, Wright DC, Smith JC, Neufer PD, Muoio DM, Holloway GP. Identification of a novel malonyl-CoA IC(50) for CPT-I: implications for predicting in vivo fatty acid oxidation rates. Biochem J. 2012 Nov 15;448(1):13–20.

Published In

Biochem J

DOI

EISSN

1470-8728

Publication Date

November 15, 2012

Volume

448

Issue

1

Start / End Page

13 / 20

Location

England

Related Subject Headings

  • Rats, Sprague-Dawley
  • Rats
  • Physical Conditioning, Animal
  • Palmitoyl Coenzyme A
  • Oxygen Consumption
  • Oxidation-Reduction
  • Muscle, Skeletal
  • Muscle Fibers, Slow-Twitch
  • Mitochondria, Muscle
  • Malonyl Coenzyme A