Pineal Neurobiology Lab, Department of Physiology, Federal University of São Paulo, São Paulo, Brazil.
Department of Biochemistry, Federal University of São Paulo, São Paulo, Brazil.
J Pineal Res. 2019 Mar;66(2):e12549. doi: 10.1111/jpi.12549. Epub 2019 Jan 31.
Brown adipose tissue (BAT) influences energy balance through nonshivering thermogenesis, and its metabolism daily and seasonal variations are regulated by melatonin through partially known mechanisms. We evaluated the role of melatonin in BAT molecular machinery of male Control, pinealectomized (PINX), and melatonin-treated pinealectomized (PINX/Mel) adult rats. BAT was collected either every 3 hours over 24 hours or after cold or high-fat diet (HFD) acute exposure. HFD PINX animals presented decreased Dio2 expression, while HFD PINX/Mel animals showed increased Dio2, Ucp1, and Cidea expression. Cold-exposed PINX rats showed decreased Dio2 and Lhs expression, and melatonin treatment augmented Adrβ3, Dio2, Ucp1, and Cidea expression. Daily profiles analyses showed altered Dio2, Lhs, Ucp1, Pgc1α, and Cidea gene and UCP1 protein expression in PINX animals, leading to altered rhythmicity under sub-thermoneutral conditions, which was partially restored by melatonin treatment. The same was observed for mitochondrial complexes I, II, and IV protein expression and enzyme activity. Melatonin absence seems to impair BAT responses to metabolic challenges, and melatonin replacement reverses this effect, with additional increase in the expression of crucial genes, suggesting that melatonin plays an important role in several key points of the thermogenic activation pathway, influencing both the rhythmic profile of the tissue and its ability to respond to metabolic challenges, which is crucial for the organism homeostasis.
棕色脂肪组织 (BAT) 通过不颤抖产热影响能量平衡,其代谢的日常和季节性变化受褪黑素通过部分已知机制调节。我们评估了褪黑素在雄性对照、松果体切除 (PINX) 和褪黑素处理的松果体切除 (PINX/Mel) 成年大鼠 BAT 分子机制中的作用。BAT 要么在 24 小时内每 3 小时收集一次,要么在冷或高脂肪饮食 (HFD) 急性暴露后收集。HFD PINX 动物表现出 Dio2 表达降低,而 HFD PINX/Mel 动物表现出 Dio2、Ucp1 和 Cidea 表达增加。冷暴露的 PINX 大鼠表现出 Dio2 和 Lhs 表达降低,而褪黑素处理增强了 Adrβ3、Dio2、Ucp1 和 Cidea 表达。每日分析显示,PINX 动物的 Dio2、Lhs、Ucp1、Pgc1α 和 Cidea 基因和 UCP1 蛋白表达发生改变,导致在亚体温条件下节律性发生改变,褪黑素处理部分恢复了这种改变。线粒体复合物 I、II 和 IV 蛋白表达和酶活性也观察到同样的情况。褪黑素缺乏似乎会损害 BAT 对代谢挑战的反应,而褪黑素替代会逆转这种效应,并进一步增加关键基因的表达,这表明褪黑素在产热激活途径的几个关键点中发挥重要作用,影响组织的节律性特征及其对代谢挑战的反应能力,这对机体的内稳态至关重要。