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PMID: 7693667 Published · ppublish English Journal Article Research Support, U.S. Gov't, P.H.S.

Selective modulation by cGMP of the K+ channel activated by speract.

The Journal of biological chemistry ·Vol. 268 ·No. 30 ·1993-10-25 ·Pages 22402-7

Cook SP, Babcock DF

Abstract

The egg peptide speract stimulates sperm guanylyl cyclase and presumably enhances fertilization, but the roles of cGMP in sperm responses are yet undetermined. Here we show that speract-induced accumulation of cGMP or cAMP is selectively enhanced by the phosphodiesterase inhibitors, 3-isobutyl-1-methylxanthine (IBMX) or papaverine, respectively. These inhibitors provided the unusual opportunity to examine the consequences of manipulating cGMP- and cAMP-dependent responses. The following observations suggest that cGMP mediates activation of K channels, the earliest known ionic event in speract signal transduction: 1) both cGMP content and K+ permeability are maximal within 15 s of speract stimulation and both decline after intracellular pH (pHi) increases in response to hyperpolarization; 2) IBMX prolongs elevation of cGMP and sustains K+ permeability after pHi increases; 3) both cGMP accumulation and K+ permeability also are enhanced when the pHi increase is prevented by an elevated concentration of external K+ (Ko); 4) elevating pHi with NH4Cl bypasses the blockade imposed by high Ko and decreases K+ permeability. Because IBMX antagonizes this action of NH4Cl, these results further suggest that elevation of pHi initiates an inactivation of guanylyl cyclase that leads to K channel closure. However, K+ permeability is restored upon subsequent elevation of intracellular [Ca2+] (Cai), indicating either that sperm K channels possess an alternate regulatory mode, or that a distinct Ca(2+)-activated K permeability also participates in speract signal transduction. Regardless of the mechanism that mediates Cai action, sperm K channels are identified as downstream targets of cGMP and are implicated in a feedback loop that both terminates guanylyl cyclase activity and leads to their own inactivation.

MeSH Terms
1-Methyl-3-isobutylxanthine/pharmacology 3',5'-Cyclic-AMP Phosphodiesterases/metabolism 3',5'-Cyclic-GMP Phosphodiesterases/metabolism Ammonium Chloride/pharmacology Animals Cyclic AMP/metabolism Cyclic GMP/metabolism Dimethyl Sulfoxide/pharmacology Hydrogen-Ion Concentration Kinetics Male Membrane Potentials/drug effects,physiology Oligopeptides/isolation & purification,pharmacology Papaverine/pharmacology Potassium/metabolism Potassium Channels/drug effects,physiology Sea Urchins Semen/chemistry Spermatozoa/drug effects,metabolism,physiology Tetraethylammonium Tetraethylammonium Compounds/pharmacology
Chemicals
Oligopeptides Potassium Channels Tetraethylammonium Compounds Ammonium Chloride Tetraethylammonium speract Papaverine Cyclic AMP 3',5'-Cyclic-AMP Phosphodiesterases 3',5'-Cyclic-GMP Phosphodiesterases Cyclic GMP Potassium 1-Methyl-3-isobutylxanthine Dimethyl Sulfoxide
Authors & Affiliations
2 authors, click to expand affiliations / ORCID
Cook S P
Department of Biochemistry, University of Washington, Seattle 98195.
Babcock D F
Article Info
Journal
The Journal of biological chemistry
Abbr.
J Biol Chem
ISSN
0021-9258
Published
1993-10-25
Pages
22402-7
Language
English
Region
United States
NLM ID
2985121R
Subset
IM
Grants
NICHD NIH HHS · HD22973 · United States
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