Department of Molecular Biology, Ruđer Bošković Institute, HR-10000 Zagreb, Croatia.
Division of Molecular Medicine, Ruđer Bošković Institute, HR-10000 Zagreb, Croatia.
Int J Mol Sci. 2021 May 20;22(10):5400. doi: 10.3390/ijms22105400.
Central and peripheral serotonin (5HT) have opposing functions in the regulation of energy homeostasis. Both increasing 5HT signaling in the brain and decreasing 5HT signaling in the periphery have been proposed as potential treatments for obesity. This study investigates the relationship between constitutionally high or low 5HT activity and systemic net energy balance. Two sublines of rats with high and low whole-body 5HT tone, obtained by selective breeding for platelet 5HT parameters, were examined for fat accumulation in different white adipose tissue (WAT) depots, glucose/insulin tolerance, blood metabolic parameters, and expression of various metabolic genes. High-5HT animals, unlike their low-5HT counterparts, developed widespread intra-abdominal obesity associated with glucose and insulin intolerance, which worsened with age. They also had elevated blood glucose and lipid parameters but showed no significant changes in circulating leptin, resistin, and adipsin levels. Surprisingly, adiponectin levels were increased in plasma but reduced in the WAT of high-5HT rats. A limited number of metabolic genes belonging to different functional classes showed differential expression in WAT of high-5HT compared to low-5HT rats. Overall, a constitutive increase in 5HT tone is associated with a positive energy balance acting through subtle dysregulation of a broad spectrum of metabolic pathways.
中枢和外周 5-羟色胺(5HT)在能量平衡调节中具有相反的功能。增加大脑中的 5HT 信号和减少外周的 5HT 信号都被提议作为肥胖的潜在治疗方法。本研究调查了高或低 5HT 活性与全身净能量平衡之间的关系。通过选择性繁殖血小板 5HT 参数获得了具有高和低全身 5HT 音调的大鼠亚系,检查了不同白色脂肪组织(WAT)隔室中的脂肪积累、葡萄糖/胰岛素耐量、血液代谢参数以及各种代谢基因的表达。与低 5HT 动物不同,高 5HT 动物会发展出广泛的腹内肥胖症,伴有葡萄糖和胰岛素耐量降低,并且随着年龄的增长而恶化。它们还具有较高的血糖和血脂参数,但循环瘦素、抵抗素和脂联素水平没有明显变化。令人惊讶的是,高 5HT 大鼠的血浆中脂联素水平增加,但 WAT 中的脂联素水平降低。属于不同功能类别的少数代谢基因在高 5HT 大鼠的 WAT 中表现出差异表达。总体而言,5HT 音调的固有增加与积极的能量平衡有关,通过广泛代谢途径的微妙失调发挥作用。