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再喂养期间骨骼肌解偶联蛋白3(UCP-3)基因表达的下调可通过冷暴露来预防。

Downregulation of skeletal muscle UCP-3 gene expression during refeeding is prevented by cold exposure.

作者信息

Samec S, Seydoux J, Dulloo A G

机构信息

Department of Physiology, University of Geneva, Switzerland.

出版信息

Pflugers Arch. 2000 Apr;439(6):723-9. doi: 10.1007/s004249900237.

Abstract

We wished to gain insights into the role of skeletal muscle uncoupling protein-3 (UCP-3) in the elevated efficiency of fat recovery during refeeding after starvation. Previous observations have revealed that muscle UCP-3 expression is downregulated in rats during refeeding at 22 degrees C. Therefore, we investigated whether this also occurs during refeeding at thermoneutrality (29 C) or in the cold (6 C), since at these environmental temperatures the refed animals also show diminished thermogenesis and a higher rate of fat deposition than controls. The UCP-3 mRNA level in the skeletal muscles studied (soleus, gastrocnemius and tibialis anterior) was significantly lower in the refed group than in controls at thermoneutrality, but there were no such differences between these two groups in the cold. This effect of cold, namely abolishing refeeding-induced downregulation of skeletal muscle UCP, is specific to UCP-3 since the gene expression of skeletal muscle UCP-2 remained significantly lower in the refed than in the controls both at thermoneutrality and in the cold. These findings during refeeding in the cold therefore dissociate UCP-3 gene regulation from the adaptive reduction in thermogenesis that accelerates fat deposition during weight recovery. They also reveal differential responses of UCP-3 and UCP-2, whose significance is discussed in the light of our previously proposed hypothesis, which centers upon a role for these UCP homologues in the regulation of lipids as a fuel substrate.

摘要

我们希望深入了解骨骼肌解偶联蛋白-3(UCP-3)在饥饿后再喂养期间脂肪恢复效率提高过程中的作用。先前的观察结果显示,在22摄氏度再喂养期间,大鼠肌肉中的UCP-3表达下调。因此,我们研究了在热中性(29摄氏度)或寒冷(6摄氏度)环境下再喂养时是否也会出现这种情况,因为在这些环境温度下,再喂养的动物与对照组相比,产热减少,脂肪沉积率更高。在热中性环境下,再喂养组所研究的骨骼肌(比目鱼肌、腓肠肌和胫骨前肌)中的UCP-3 mRNA水平显著低于对照组,但在寒冷环境下,这两组之间没有这种差异。寒冷的这种作用,即消除再喂养引起的骨骼肌UCP下调,对UCP-3具有特异性,因为在热中性和寒冷环境下,再喂养组骨骼肌UCP-2的基因表达仍显著低于对照组。因此,在寒冷环境下再喂养期间的这些发现将UCP-3基因调控与体重恢复期间加速脂肪沉积的产热适应性降低分离开来。它们还揭示了UCP-3和UCP-2的不同反应,根据我们先前提出的假说讨论了其意义,该假说以这些UCP同源物在脂质作为燃料底物的调节中的作用为中心。

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