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首页> 外文期刊>Hormones and behavior >Thyroid hormone status affects expression of daily torpor and gene transcription in Djungarian hamsters (Phodopus sungorus)
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Thyroid hormone status affects expression of daily torpor and gene transcription in Djungarian hamsters (Phodopus sungorus)

机译:甲状腺激素状态会影响Djungarian仓鼠(Phodopus sungorus)的日常烘烤和基因转录

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摘要

Thyroid hormones (TH) play a key role in regulation of seasonal as well as acute changes in metabolism. Djungarian hamsters (Phodopus sungorus) adapt to winter by multiple changes in behaviour and physiology including spontaneous daily torpor, a state of hypometabolism and hypothermia. We investigated effects of systemic TH administration and ablation on the torpor behaviour in Djungarian hamsters adapted to short photoperiod. Hyperthyroidism was induced by giving T4 or T3 and hypothyroidism by giving methimazole (MMI) and sodium perchlorate via drinking water. T3 treatment increased water, food intake and body mass, whereas MMI had the opposite effect. Continuous recording of body temperature revealed that low T3 serum concentrations increased torpor incidence, lowered T-b and duration, whereas high T3 serum concentrations inhibited torpor expression. Gene expression of deiodinases (dio) and uncoupling proteins (ucp) were analysed by qPCR in hypothalamus, brown adipose tissue (BAT) and skeletal muscle. Expression of dio2, the enzyme generating T3 by deiodination of T4, and ucps, involved in thermoregulation, indicated a tissue specific response to treatment. Torpor per se decreased dio2 expression irrespective of treatment or tissue, suggesting low intracellular T3 concentrations during torpor. Down regulation of ucp1 and ucp3 during torpor might be a factor for the inhibition of BAT thermogenesis. Hypothalamic gene expression of neuropeptide Y, propopiomelanocortin and somatostatin, involved in feeding behaviour and energy balance, were not affected by treatment. Taken together our data indicate a strong effect of thyroid hormones on torpor, suggesting that lowered intracellular T3 concentrations in peripheral tissues promote torpor. (C) 2015 Elsevier Inc. All rights reserved.
机译:甲状腺激素(TH)在调节季节性和急性新陈代谢方面起着关键作用。 Djungarian仓鼠(Phodopus sungorus)通过多种行为和生理变化来适应冬季,包括自发性的日常打por,低代谢和低体温状态。我们调查了全身性TH施用和消融对适应短光周期的Djungarian仓鼠的行为的影响。通过给予T4或T3引起甲状腺功能亢进,通过饮水给予甲巯咪唑(MMI)和高氯酸钠引起甲状腺功能减退。 T3处理增加水,食物摄入和体重,而MMI则相反。连续记录体温表明,低T3血清浓度会增加玉米粥的发生率,降低T-b和持续时间,而高T3血清浓度会抑制玉米粥的表达。通过qPCR分析下丘脑,棕色脂肪组织(BAT)和骨骼肌中脱碘酶(dio)和解偶联蛋白(ucp)的基因表达。参与热调节的dio2(通过T4脱碘产生T3的酶)和ucps的表达表明组织对治疗的特异性反应。不论治疗方法或组织如何,Torpor本身都会降低dio2表达,这表明在Torpor期间细胞内T3浓度较低。 torpor期间ucp1和ucp3的下调可能是抑制BAT生热的一个因素。神经肽Y,促黑素皮质激素和生长抑素的下丘脑基因表达不受喂养行为和能量平衡的影响。综合我们的数据表明,甲状腺激素对torpor有很强的作用,这表明降低外周组织中细胞内T3的浓度会促进torpor。 (C)2015 Elsevier Inc.保留所有权利。

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