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首页> 外文期刊>Journal of experimental zoology, Part A. Comparative experimental biology >Sodium or potassium ions activate different kinetics of gill Na, K-ATPase in three seawater- and freshwater-acclimated euryhaline teleosts.
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Sodium or potassium ions activate different kinetics of gill Na, K-ATPase in three seawater- and freshwater-acclimated euryhaline teleosts.

机译:钠或钾离子激活三种海水和淡水驯化的硬y硬骨鱼Na,Na-K-ATPase的不同动力学。

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The effects of [Na(+)] or [K(+)] on Na, K-ATPase activity of FW-acclimated and SW-acclimated tilapia, puffer and milkfish were examined in gill homogenates. [Na(+)] or [K(+)] stimulated Na, K-ATPase hydrolyzing ATP in all experimental groups. ATP hydrolysis stimulated by [Na(+)] or [K(+)] followed Michaelian-Menten kinetics. Km values for [K(+)] (i.e., Km(K)), were lower in SW- than FW-acclimated tilapia and puffer fishes (tilapia: 8.69+/-0.22 vs. 11.93+/-1.17 mM; puffer: 13.51+/-1.39 vs. 30.52+/-2.66 mM). Km values for [Na(+)] (i.e., Km(Na)), were lower in FW- than SW-acclimated milkfish (3.76+/-0.54 vs. 7.55+/-1.08 mM). These data suggest that [K(+)] stimulates ATP hydrolysis to rates higher in SW- than FW-acclimated tilapia and puffer fishes, while [Na(+)] stimulated ATP hydrolysis at rates higher in FW- than SW-acclimated milkfish. This is the first demonstration that Na, K-ATPase activity of euryhaline tilapia, puffer, and milkfish modulated by [Na(+)] or [K(+)] have different effects between FW- and SW-acclimated groups. Such responses as changes in properties of branchial Na, K-ATPase may contribute to improve the osmoregulatory capacity of tilapia, puffer and milkfish to acclimate in seawater and fresh water.
机译:在g匀浆中检查了[Na(+)]或[K(+)]对FW适应和SW适应的罗非鱼,河豚和乳鱼的Na,K-ATPase活性的影响。在所有实验组中,[Na(+)]或[K(+)]刺激Na,K-ATPase水解ATP。由[Na(+)]或[K(+)]刺激的ATP水解遵循Michaelian-Menten动力学。在SW-中,[K(+)]的Km值(即Km(K))低于适应FW的罗非鱼和河豚(罗非鱼:8.69 +/- 0.22对11.93 +/- 1.17 mM;河豚: 13.51 +/- 1.39 vs.30.52 +/- 2.66 mM)。在FW-中,[Na(+)]的Km值(即Km(Na))要比SW适应的遮目鱼要低(3.76 +/- 0.54对7.55 +/- 1.08 mM)。这些数据表明,[K(+)]在SW-刺激的罗非鱼和河豚中刺激ATP水解的速率更高,而[Na(+)]在FW-中刺激的ATP水解率高于SW-适应的遮盖鱼。这是第一个证明,由[Na(+)]或[K(+)]调节的鱼腥草罗非鱼,河豚和遮目鱼的Na,K-ATPase活性在FW-和SW适应组之间具有不同的作用。诸如分支Na,K-ATPase性质改变等响应可能有助于提高罗非鱼,河豚和遮目鱼在海水和淡水中适应水的渗透调节能力。

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