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Axokinin phosphorylation by cAMP-dependent protein kinase is sufficient for activation of sperm flagellar motility
Abstract:
Using a selective inhibitor of cAMP-dependent protein kinase, N-[2(methylamino)ethyl]-5-isoquinolinesulfonamide (H-8), the requirement for cAMP-dependent phosphoproteins in the initiation of dog sperm flagellar motility was examined. H-8 inhibited motility of live as well as reactivated sperm in a dose-dependent manner. The half-maximal inhibition of reactivated motility (32 microM) paralleled the inhibition of pure catalytic subunit of cAMP-dependent protein kinase (50 microM) measured under the same conditions. H-8 inhibited protein phosphorylation both in whole models and in isolated Nonidet P-40 (NP-40) extracts of sperm. Axokinin, the heat-stable NP-40-soluble protein whose phosphorylation is required for flagellar reactivation, represented 97% of the de novo phosphate incorporation in the NP-40 extract after stimulation by cAMP. 500 microM H-8 inhibited axokinin phosphorylation by 87%. When sperm were reactivated in the presence of up to 5 mM H-8 with NP-40 extract that had been prephosphorylated with cAMP-dependent protein kinase, then neither cAMP nor cAMP-dependent protein kinase activity was required for full flagellar reactivation. If sperm were rendered completely immotile by pretreatment with H-8, then the resulting model remained immotile in the continued presence of H-8 unless prephosphorylated axokinin was added. These results suggest that phosphorylated axokinin is not only required for flagellar reactivation but is sufficient as well.
Insights
The study investigated the role of cAMP-dependent phosphoproteins in dog sperm motility using H-8, a protein kinase inhibitor. Results show phosphorylated axokinin is essential and sufficient for flagellar reactivation.
Area of Science:
- Sperm motility research
- Molecular biology
- Biochemistry
Background:
- Sperm motility is crucial for fertilization.
- Cyclic adenosine monophosphate (cAMP)-dependent protein kinases play a role in cellular processes.
- Phosphorylation regulates protein function.
Purpose of the Study:
- To determine the necessity of cAMP-dependent phosphoproteins for initiating sperm flagellar motility.
- To investigate the role of axokinin phosphorylation in sperm reactivation.
Main Methods:
- Utilized H-8, a selective inhibitor of cAMP-dependent protein kinase.
- Assessed sperm motility in live and reactivated sperm.
- Measured protein phosphorylation in whole sperm and sperm extracts.
- Quantified axokinin phosphorylation levels.
Main Results:
- H-8 dose-dependently inhibited sperm motility and protein phosphorylation.
- Axokinin phosphorylation was significantly reduced by H-8.
- Prephosphorylated axokinin rescued motility in H-8 treated sperm, independent of cAMP or kinase activity.
Conclusions:
- Phosphorylated axokinin is both required and sufficient for sperm flagellar reactivation.
- This finding clarifies a key molecular mechanism underlying sperm motility initiation.