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PMID: 11101510 Published · ppublish English

Adenylate kinase 1 gene deletion disrupts muscle energetic economy despite metabolic rearrangement.

The EMBO journal ·Vol. 19 ·No. 23 ·2001-01-25

Janssen E, Dzeja P P, Oerlemans F, Simonetti A W, Heerschap A, de Haan A, Rush P S, Terjung R R, Wieringa B, Terzic A

Abstract

Efficient cellular energy homeostasis is a critical determinant of muscle performance, providing evolutionary advantages responsible for species survival. Phosphotransfer reactions, which couple ATP production and utilization, are thought to play a central role in this process. Here, we provide evidence that genetic disruption of AK1-catalyzed ss-phosphoryl transfer in mice decreases the potential of myofibers to sustain nucleotide ratios despite up-regulation of high-energy phosphoryl flux through glycolytic, guanylate and creatine kinase phosphotransfer pathways. A maintained contractile performance of AK1-deficient muscles was associated with higher ATP turnover rate and larger amounts of ATP consumed per contraction. Metabolic stress further aggravated the energetic cost in AK1(-/-) muscles. Thus, AK1-catalyzed phosphotransfer is essential in the maintenance of cellular energetic economy, enabling skeletal muscle to perform at the lowest metabolic cost.

Article Info
Journal
The EMBO journal
Abbr.
EMBO J
Published
2001-01-25
Indexed
2000-12-26
Updated
2016-11-24
Language
English
Country/Region
England
NLM ID
8208664
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