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西马特罗对甲状腺功能减退和甲状腺功能亢进大鼠肌肉蛋白质代谢的影响及其作用

Effects of cimaterol on muscle protein metabolism and its actions in hypothyroid and hyperthyroid rats.

作者信息

Forsberg N E, Wehr N B

机构信息

Department of Animal Science, Oregon State University, Corvallis 97331-6702.

出版信息

Domest Anim Endocrinol. 1990 Apr;7(2):149-63. doi: 10.1016/0739-7240(90)90021-q.

Abstract

Objectives were to examine mechanisms underlying anabolic actions of cimaterol in skeletal muscle and to evaluate cimaterol's actions in hypothyroid and hyperthyroid rats. In the first study growing rats were fed either a control diet or a diet containing cimaterol for 10 days. In a second study sham-thyroidectomized and thyroidectomized (Tx) rats were assigned to one of 5 treatments: control (sham-Tx), Tx, Tx supplemented with cimaterol, Tx injected with triiodothyronine (T3), and Tx rats injected with T3 and supplemented with cimaterol. Effects of treatments on growth, muscle weights and urinary NT-methylhistidine (NMH) excretion were evaluated in both trials. Muscle was also collected for determinations of DNA, RNA, protein and activities of several proteolytic enzymes. Cimaterol caused muscle hypertrophy and increased urinary NMH excretion. Hence, anabolic actions of cimaterol may result from an increase in myofibrillar protein synthesis which exceeds changes in myofibrillar protein degradation. Urinary NMH excretion was reduced by thyroidectomy and increased in hyperthyroid rats and both hypothyroidism and hyperthyroidism were characterized by myopathy. Cimaterol increased muscle weights in hypothyroid but not in hyperthyroid rats. Therefore, cimaterol's anabolic properties are thyroid hormone-independent and antagonized by excess thyroid hormone. Anabolic actions of cimaterol in hypothyroid rat muscle were attributed to an action on protein synthesis because urinary NMH excretion was not affected by cimaterol but muscle RNA concentration was increased. Activities of cathepsins B, D and L and neutral proteinase were dose-related to thyroid status, however, were unrelated to cimaterol-dependent perturbations in NMH excretion. Control of muscle protein balance by thyroid hormones may involve regulation of these enzymes; however, control of muscle protein degradation by cimaterol is likely directed towards other proteolytic mechanisms or to mechanisms which alter susceptibility of myofibrillar proteins to degradation.

摘要

目的是研究西马特罗在骨骼肌中的合成代谢作用机制,并评估西马特罗对甲状腺功能减退和甲状腺功能亢进大鼠的作用。在第一项研究中,将生长中的大鼠喂以对照饮食或含西马特罗的饮食10天。在第二项研究中,将假手术切除甲状腺和手术切除甲状腺(Tx)的大鼠分为5种处理之一:对照(假手术-Tx)、Tx、补充西马特罗的Tx、注射三碘甲状腺原氨酸(T3)的Tx以及注射T3并补充西马特罗的Tx大鼠。在两项试验中均评估了处理对生长、肌肉重量和尿NT-甲基组氨酸(NMH)排泄的影响。还收集肌肉用于测定DNA、RNA、蛋白质以及几种蛋白水解酶的活性。西马特罗引起肌肉肥大并增加尿NMH排泄。因此,西马特罗的合成代谢作用可能源于肌原纤维蛋白合成增加,其超过了肌原纤维蛋白降解的变化。甲状腺切除术后尿NMH排泄减少,甲状腺功能亢进大鼠中增加,甲状腺功能减退和甲状腺功能亢进均以肌病为特征。西马特罗增加甲状腺功能减退大鼠的肌肉重量,但不增加甲状腺功能亢进大鼠的肌肉重量。因此,西马特罗的合成代谢特性不依赖于甲状腺激素,并被过量甲状腺激素所拮抗。西马特罗在甲状腺功能减退大鼠肌肉中的合成代谢作用归因于对蛋白质合成的作用,因为尿NMH排泄不受西马特罗影响,但肌肉RNA浓度增加。组织蛋白酶B、D和L以及中性蛋白酶的活性与甲状腺状态呈剂量相关,但与西马特罗依赖性的NMH排泄扰动无关。甲状腺激素对肌肉蛋白质平衡的控制可能涉及这些酶的调节;然而,西马特罗对肌肉蛋白质降解的控制可能针对其他蛋白水解机制或改变肌原纤维蛋白对降解敏感性的机制。

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