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Muscle 3243A -> G mutation load and capacity of the mitochondrial energy-generating system

Authors :
Bart W. Smits
Baziel G. M. van Engelen
Rob C.A. Sengers
Jan A.M. Smeitink
Marjo S. van der Knaap
Marloes H. Siers
Richard J. Rodenburg
Frans J.M. Trijbels
Francjan J. van Spronsen
Liesbeth T. Wintjes
Markus Schuelke
Barbara Lucke
Eva Morava
Henk J. ter Laak
Antoon J.M. Janssen
Lambert P. van den Heuvel
Frans A. Hol
Pediatric surgery
Neuroscience Campus Amsterdam 2008
Other departments
Faculteit Medische Wetenschappen/UMCG
Center for Liver, Digestive and Metabolic Diseases (CLDM)
Source :
Annals of Neurology, 63(4), 473-481. John Wiley and Sons Inc., Annals of Neurology, 63, 473-81, Annals of neurology, 63(4), 473-481. John Wiley and Sons Inc., Janssen, A J M, Schuelke, M, Smeitink, J A M, Trijbels, F J M, Sengers, R C A, Lucke, B, Wintjes, L T M, Morava, E, van Engelen, B G M, Smits, B W, Hol, F A, Siers, M H, Ter Laak, H, van der Knaap, M S, van Spronsen, F J, Rodenburg, R J T & van den Heuvel, L P 2008, ' Muscle 3243A-->G mutation load and capacity of the mitochondrial energy-generating system ', Annals of Neurology, vol. 63, no. 4, pp. 473-481 . https://doi.org/10.1002/ana.21328, Annals of Neurology, 63(4), 473-481. Wiley, Annals of Neurology, 63, 4, pp. 473-81
Publication Year :
2008

Abstract

Contains fulltext : 70753.pdf (Publisher’s version ) (Closed access) OBJECTIVE: The mitochondrial energy-generating system (MEGS) encompasses the mitochondrial enzymatic reactions from oxidation of pyruvate to the export of adenosine triphosphate. It is investigated in intact muscle mitochondria by measuring the pyruvate oxidation and adenosine triphosphate production rates, which we refer to as the "MEGS capacity." Currently, little is known about MEGS pathology in patients with mutations in the mitochondrial DNA. Because MEGS capacity is an indicator for the overall mitochondrial function related to energy production, we searched for a correlation between MEGS capacity and 3243A-->G mutation load in muscle of patients with the MELAS (mitochondrial myopathy, encephalopathy, lactic acidosis, and strokelike episodes) syndrome. METHODS: In muscle tissue of 24 patients with the 3243A-->G mutation, we investigated the MEGS capacity, the respiratory chain enzymatic activities, and the 3243A-->G mutation load. To exclude coinciding mutations, we sequenced all 22 mitochondrial transfer RNA genes in the patients, if possible. RESULTS: We found highly significant differences between patients and control subjects with respect to the MEGS capacity and complex I, III, and IV activities. MEGS-related measurements correlated considerably better with the mutation load than respiratory chain enzyme activities. We found no additional mutations in the mitochondrial transfer RNA genes of the patients. INTERPRETATION: The results show that MEGS capacity has a greater sensitivity than respiratory chain enzymatic activities for detection of subtle mitochondrial dysfunction. This is important in the workup of patients with rare or new mitochondrial DNA mutations, and with low mutation loads. In these cases we suggest to determine the MEGS capacity.

Details

Language :
English
ISSN :
03645134
Volume :
63
Issue :
4
Database :
OpenAIRE
Journal :
Annals of Neurology
Accession number :
edsair.doi.dedup.....7309e350811f28f7884ed308e7f876fe
Full Text :
https://doi.org/10.1002/ana.21328