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大鼠心脏甲状腺刺激的钠钾ATP酶的特性

Characteristics of thyroid-stimulated Na+-K+-ATPase of rat heart.

作者信息

Philipson K D, Edelman I S

出版信息

Am J Physiol. 1977 May;232(5):C202-6. doi: 10.1152/ajpcell.1977.232.5.C202.

Abstract

The possibility that augmentation of cardiac Na+-K+-dependent adenosine triphosphatase (Na-K-ATPase) by L-3,5,3'-triiodothyronine (T3) was mediated by early changes in intracellular ion concentrations ([Na+]1, [K+]1) was explored by time-course analysis after a single injection of T3 in thyroid-ablated (131I) rats. At 6 and 16 h after injection, T3 had no significant effect on cardiac [Na+]1, [K+]1, or microsomal Na-K-ATPase activity. At 24 and 48 h, however, T3 elicited proportionate increases in [K+]1 and Na-K-ATPase activity. Thus, no evidence was adduced that the T3-dependent increase in ventricular Na-K-ATPase activity is an adaptive response to prior changes in intracellular ion concentrations. The increase in [K+]1 is attributable to an increase in Na+ pump activity. Administration of T3 to hypothyroid rats had no effect on the transition temperature or the activation energy of ventricular microsomal Na-K-ATPase, as analyzed by an Arrhenius plot. Thus, the lipid microenvironment and the properties of the enzyme may be independent of thyroid status. The latter inference was supported by kinetic analysis, in that T3 had no effect on the Km for ATP or the K1/2's for Na+ and K+. Injection of T3 of the hypothyroid rat, however, significantly increased the Vmax's for ATP, Na+, and K+ of ventricular microsomal Na-K-ATPase. These results are in accord with the inference of thyroidal induction of Na-K-ATPase indistinguishable from those present in the athyroid state.

摘要

在甲状腺切除(131I)的大鼠单次注射L-3,5,3'-三碘甲状腺原氨酸(T3)后,通过时程分析探讨了T3增强心脏钠钾依赖性三磷酸腺苷酶(Na-K-ATPase)是否由细胞内离子浓度([Na+]i、[K+]i)的早期变化介导。注射后6小时和16小时,T3对心脏[Na+]i、[K+]i或微粒体Na-K-ATPase活性无显著影响。然而,在24小时和48小时时,T3引起[K+]i和Na-K-ATPase活性成比例增加。因此,没有证据表明心室Na-K-ATPase活性的T3依赖性增加是对细胞内离子浓度先前变化的适应性反应。[K+]i的增加归因于钠泵活性的增加。通过阿累尼乌斯图分析,给甲状腺功能减退的大鼠注射T3对心室微粒体Na-K-ATPase的转变温度或活化能没有影响。因此,脂质微环境和酶的性质可能与甲状腺状态无关。动力学分析支持了后一种推断,即T3对ATP的Km或Na+和K+的K1/2没有影响。然而,给甲状腺功能减退的大鼠注射T

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