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Ca2+-ATPase activity and Ca2+ uptake by sarcoplasmic reticulum in fish heart: Effects of thermal acclimation

机译:鱼心中肌浆网Ca2 + -ATPase活性和Ca2 +吸收:热适应的影响

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摘要

This study was designed to compare the activities of sarcoplasmic (SR) Ca2+-ATPase and Ca2+ uptake in fish and mammalian hearts and to determine whether thermal acclimation has any effect on the function of the cardiac SR in fish. To this end, we measured thapsigargin-sensitive Ca2+-ATPase activity and thapsigargin-inhibitable Ca2+ uptake velocity in crude cardiac homogenates of newborn and adult rats and of two teleost fish (crucian carp and rainbow trout) acclimated to low (4 degrees C) and high (17 degrees C and 24 degrees C for trout and carp, respectively) ambient temperatures. The TG-sensitive Ca2+-ATPase activity was highest in adult rat, and the corresponding activities of cold-acclimated trout, warm-acclimated trout, warm-acclimated carp, cold-acclimated carp and newborn rat were 76, 58, 43, 28 and 23 %, respectively, of that of the adult rat at 25 degrees C. SR Ca2+ uptake velocity, measured using Fura-2 at room temperature (approximately 22 degrees C), was highest in cold-acclimated trout, and the values for adult rat, warm-acclimated trout, newborn rat, warm-acclimated carp and cold-acclimated carp were 93, 56, 24, 21 and 14 % of the uptake velocity of cold-acclimated trout, respectively. When corrected to the body temperature of the animal, the relative rates of SR Ca2+ uptake were 100, 26, 19, 18, 11 and 2 % for adult rat, newborn rat, cold-acclimated trout, warm-acclimated trout, warm-acclimated carp and cold-acclimated carp, respectively. These findings show that SR Ca2+ uptake is slower in fish than in mammalian hearts and that marked species-specific differences exist among teleost fish in this respect. Furthermore, acclimation to cold increases the Ca2+ uptake rate of trout cardiac SR (complete thermal compensation) but decreases the SR Ca2+ uptake rate of crucian carp heart. This difference in acclimation response probably reflects the different activity patterns of the two species in their natural habitat during the cold season. [References: 30]
机译:本研究旨在比较鱼类和哺乳动物心脏中肌浆(SR)Ca2 + -ATPase和Ca2 +吸收的活性,并确定热适应对鱼类心脏SR的功能是否有任何影响。为此,我们测量了新生和成年大鼠的粗心脏匀浆和适应于低(4摄氏度)的两条硬骨鱼(cr鱼和虹鳟鱼)的粗胡萝卜素敏感的Ca2 + -ATPase活性和粗胡萝卜素抑制的Ca2 +吸收速度。高温(鳟鱼和鲤鱼分别为17摄氏度和24摄氏度)。 TG敏感的Ca2 + -ATPase活性在成年大鼠中最高,冷适应鳟鱼,温适应鳟鱼,温适应鲤鱼,冷适应鲤鱼和新生大鼠的相应活性分别为76、58、43、28和25°C时成年大鼠的23%。在室温(约22°C)下使用Fura-2测量的SR Ca2 +吸收速度在冷适应的鳟鱼中最高,成年大鼠的值最高,温驯化鳟鱼,新生大鼠,温驯化鲤鱼和冷适应鲤鱼分别占冷适应鳟鱼吸收速度的93%,56%,24%,21%和14%。校正至动物体温后,成年大鼠,新生大鼠,冷适应鳟鱼,温适应鳟鱼,温适应鳟的SR Ca2 +吸收的相对比率分别为100、26、19、18、11和2%。鲤和冷驯鲤。这些发现表明,鱼类中SR Ca2 +的吸收比哺乳动物心脏中的吸收慢,并且在这方面硬骨鱼之间存在明显的物种特异性差异。此外,适应寒冷会提高鳟鱼心脏SR的Ca2 +吸收率(完全热补偿),但会降低cru鱼心脏的SR Ca2 +吸收率。这种适应反应的差异可能反映了两个物种在寒冷季节在其自然栖息地中的不同活动方式。 [参考:30]

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