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首页> 外文期刊>Molecular and Cellular Endocrinology >Permissive effect of thyroid hormones on induction of rat colonic Na+ transport by aldosterone is not localised at the level of Na+ channel transcription.
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Permissive effect of thyroid hormones on induction of rat colonic Na+ transport by aldosterone is not localised at the level of Na+ channel transcription.

机译:甲状腺激素对醛固酮诱导大鼠结肠Na +转运的允许作用并不局限于Na +通道转录水平。

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The interrelationship between thyroid hormones and aldosterone has been examined in the regulation of rat colonic amiloride-sensitive Na+ transport which translocates Na+ through apical amiloride-sensitive Na+ channels and basolateral Na+, K+-ATPase. Electrogenic Na+ transport was measured in an Ussing chamber by the short-circuit current and identified by Na+ channel blocker amiloride. Na+-pumping activity of the basolateral Na+,K+-ATPase was investigated in nystatin-treated epithelium by measuring the equivalent short-circuit current after addition of mucosal Na+. The abundance of mRNA coding for alpha, beta and gamma subunits of the Na+ channel (rENaC) was estimated using Northern blot analysis. Hyperaldosteronism was induced by a low-salt diet and hypothyroidism by methimazole. The low-Na+ diet induced electrogenic Na+ transport in euthyroid rats but its effect was almost completely inhibited in hypothyroid animals even if the plasma concentration of aldosterone was high enough to stimulate this transport pathway both in euthyroid and hypothyroid rats. A kinetic study of the basolateral Na+,K+-ATPase revealed a decrease of Na+ transport capacity in hypothyroid rats kept on the low-Na+ diet in comparison with euthyroid animals fed the same diet. No significant differences in steady-state levels of alpha, beta and gamma rENaC mRNA were detected between euthyroid and hypothyroid rats. These data suggest that hypothyroidism decreases the efficacy of the basolateral Na+ pump but fails to inhibit it completely even though it inhibits the transepithelial electrogenic Na+ transport in response to aldosterone. We conclude that the permissive effect of thyroid hormones on the induction of electrogenic Na+ transport by aldosterone is localised beyond the transcriptional step of Na+ channel regulation.
机译:甲状腺激素和醛固酮之间的相互关系已在大鼠结肠阿米洛利敏感的Na +转运的调节中进行了检查,该转运通过根尖阿米洛利敏感的Na +通道和基底外侧Na +,K + -ATPase转运Na +。在Usssing室中,通过短路电流测量电性Na +的转运,并通过Na +通道阻滞剂阿米洛利进行鉴定。通过测量添加黏膜Na +后的等效短路电流,在制霉菌素处理的上皮中研究了基底外侧Na +,K + -ATPase的Na +泵浦活性。使用Northern blot分析估计编码Na +通道(rENaC)的α,β和γ亚基的mRNA的丰度。低盐饮食可引起醛固酮增多症,甲巯咪唑可引起甲状腺功能减退症。低钠+饮食诱导了正常甲状腺大鼠的电Na +转运,但是即使醛固酮的血浆浓度足够高以刺激正常甲状腺和甲状腺功能低下的大鼠的这种转运途径,其在甲状腺功能减退动物中的作用也几乎被完全抑制。对基底外侧Na +,K + -ATPase进行的动力学研究表明,与饲喂相同饮食的正常甲状腺动物相比,低Na +饮食的甲状腺功能减退大鼠的Na +转运能力降低。在正常甲状腺和甲状腺功能减退的大鼠之间,未检测到α,β和γrENaC mRNA稳态水平的显着差异。这些数据表明甲状腺功能减退症降低了基底外侧Na +泵的功效,但是即使它抑制了对醛固酮的跨上皮电性Na +转运,也未能完全抑制它。我们得出的结论是,甲状腺激素对醛固酮诱导的电Na +转运的诱导作用被局限在Na +通道调节的转录步骤之外。

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