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Adenine nucleotide metabolism and a role for AMP in modulating flagellar waveforms in mouse sperm.


ABSTRACT: While most ATP, the main energy source driving sperm motility, is derived from glycolysis and oxidative phosphorylation, the metabolic demands of the cell require the efficient use of power stored in high-energy phosphate bonds. In times of high energy consumption, adenylate kinase (AK) scavenges one ATP molecule by transphosphorylation of two molecules of ADP, simultaneously yielding one molecule of AMP as a by-product. Either ATP or ADP supported motility of detergent-modeled cauda epididymal mouse sperm, indicating that flagellar AKs are functional. However, the ensuing flagellar waveforms fueled by ATP or ADP were qualitatively different. Motility driven by ATP was rapid but restricted to the distal region of the sperm tail, whereas ADP produced slower and more fluid waves that propaga

SUBMITTER: Vadnais ML 

PROVIDER: S-EPMC4094002 | biostudies-literature | 2014 Jun

REPOSITORIES: biostudies-literature

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