POTASSIUM CHANNELS REGULATE HYPOOSMOTIC SHOCK-INDUCED MOTILITY OF COMMON CARP (CYPRINUS-CARPIO) SPERM

被引:66
作者
KRASZNAI, Z [1 ]
MARIAN, T [1 ]
BALKAY, L [1 ]
GASPAR, R [1 ]
TRON, L [1 ]
机构
[1] DEBRECEN UNIV MED,SCH MED,BIOMED CYCLOTRON LAB,H-4012 DEBRECEN,HUNGARY
关键词
CYPRINUS CARPIO; SPERM MOTILITY; ANION CHANNEL INHIBITORS; POTASSIUM CHANNEL INHIBITORS; HYPOOSMOTIC SHOCK; INTRACELLULAR PH;
D O I
10.1016/0044-8486(94)00234-F
中图分类号
S9 [水产、渔业];
学科分类号
0908 ;
摘要
The osmolality and composition of fish seminal plasma usually suppress sperm motility in the testis and sperm duct. Change in the osmolality of the environment at spawning activates flagellar motion of the sperm tail. The effect of inhibitors of anion and cation channels on active motion was investigated by a microscopic motility test. While sodium channel inhibitors (amiloride and tetrodotoxin) as well as anion channel inhibitors (DIDS and ethacrynic acid) did not affect motility, potassium channel inhibitors (4-AP, quinine, veratrine, verapamil) decreased the duration of flagellar motion or abolished motility completely. Potassium channel inhibitors exerted an effect on sperm motility depending on the dose and length of incubation. The voltage-activated K+ blocker 4-aminopiridine proved to be the most potent inhibitor. Its effect was completely reversible, indicating that the functional state of potassium channels is essential to the activation mechanism of sperm. Intracellular pH of the spermatozoa was measured by a fluorescent flow cytometric technique. Hypo-osmotic shock induced intracellular alkalinization of carp sperm. Increase in pH(i) was 0.15 pH units. In the presence of 4-AP the measured amplitude and kinetics of the pH(i) change was the same as in the absence of this inhibitor, arguing against a regulatory role of intracellular pH change.
引用
收藏
页码:123 / 128
页数:6
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