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甲状腺素与蟾蜍体内的钠离子转运:在从变温到恒温转变过程中的作用

Thyroxine and Na+ transport in toad: role in transition from poikilo- to homeothermy.

作者信息

Rossier B C, Rossier M, Lo C S

出版信息

Am J Physiol. 1979 Mar;236(3):C117-24. doi: 10.1152/ajpcell.1979.236.3.C117.

Abstract

The effects of thyroxine (T4) on Na+ transport, oxygen consumption (QO2), and Na+-K+-ATPase activity were studied in the urinary bladder and liver of the toad Bufo marinus. In the bladder, T4 in vitro (10(-8) to 10(-6) M) had no significant effect on these parameters during 15 h of incubation. When injected intraperitoneally (approximately 20 microgram/(kg body wt.day) for 6 days), T4 lowered base-line, short-circuit current by 62% (P less than 0.0025) and potential difference by 37% (P less than 0.001), increasing tissue resistance by 40% (P less than 0.02). T4 depressed QO2/DNA (-25%, P less than 0.05) with no significant effect on Na+-K+-ATPase activity. In liver, T4 increased the recovery per cell DNA of mitochondrial proteins by 32% (P less than 0.025), corresponding to an increased QO2 (stage IV) of isolated mitochondria per cell DNA (+54%, P less than 0.01). There was no significant effect on Na+-K+-ATPase activity. These results suggest that, unlike its function in the rat, T4 in the toad does not regulate cellular thermogenesis by inducing Na+-K+-ATPase. This major difference could account at least in part for the transition from poikilothermy to homeothermy. In addition, T4 has a distinct inhibitory effect on Na+ transport in the urinary bladder, which suggests an antagonism to the action of aldosterone.

摘要

研究了甲状腺素(T4)对海蟾蜍膀胱和肝脏中钠转运、氧消耗(QO2)以及钠钾ATP酶活性的影响。在膀胱中,体外培养15小时期间,10(-8)至10(-6)M的T4对这些参数无显著影响。当腹腔注射(约20微克/(千克体重·天),持续6天)时,T4使基线短路电流降低62%(P<0.0025),使电位差降低37%(P<0.001),组织电阻增加40%(P<0.02)。T4使QO2/DNA降低(-25%,P<0.05),对钠钾ATP酶活性无显著影响。在肝脏中,T4使每个细胞DNA的线粒体蛋白回收率增加32%(P<0.025),对应于每个细胞DNA的分离线粒体的QO2增加(IV期)(+54%,P<0.01)。对钠钾ATP酶活性无显著影响。这些结果表明,与在大鼠中的功能不同,蟾蜍中的T4不通过诱导钠钾ATP酶来调节细胞产热。这一主要差异至少可以部分解释从变温到恒温的转变。此外,T4对膀胱中的钠转运有明显的抑制作用,这表明它与醛固酮的作用存在拮抗关系。

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