首页> 外文期刊>American Journal of Physiology >Gqα/G11α deficiency in dorsomedial hypothalamus leads to obesity resulting from decreased energy expenditure and impaired sympathetic nerve activity
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Gqα/G11α deficiency in dorsomedial hypothalamus leads to obesity resulting from decreased energy expenditure and impaired sympathetic nerve activity

机译:背部假期的GQα/G11α缺乏导致能源支出减少和交感神经活动受损导致肥胖

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摘要

The G-protein subunits Gqa and G-na (Gq/na) couple receptors to phospholipase C, leading to increased intracellular calcium. In this study we investigated the consequences of Gq/^a deficiency in the dorsomedial hypothalamus (DMH), a critical site for the control of energy homeostasis. Mice with DMH-specific deletion of Gq/ria (DMHGq/11KO) were generated by stereotaxic injection of adeno-associated virus (AAV)-Cre-green fluorescent protein (GFP) into the DMH of Gqanox/ilox:G^a'/~ mice. Compared with control mice that received DMH injection of AAV-GFP, DMHGq/11KO mice developed obesity associated with reduced energy expenditure without significant changes in food intake or physical activity. DMHGq/11KO mice showed no defects in the ability of the melanocortin agonist melanotan II to acutely stimulate energy expenditure or to inhibit food intake. At room temperature (22H), DMHGq/11KO mice showed reduced sympathetic nervous system activity in brown adipose tissue (BAT) and heart, accompanied with decreased basal BAT uncoupling protein 1 {Ucp1) gene expression and lower heart rates. These mice were cold intolerant when acutely exposed to cold (6H for 5h) and had decreased cold-stimulated BAT Ucp1 gene expression. DMHGq/11KO mice also failed to adapt to gradually declining ambient temperatures and to develop adipocyte browning in inguinal white adipose tissue although their BAT Ucp1 was proportionally stimulated. Consistent with impaired cold-induced thermo-genesis, the onset of obesity in DMHGq/11KO mice was significantly delayed when housed under thermoneutral conditions (30H). Thus our results show that Gqa and G^a in the DMH are required for the control of energy homeostasis by stimulating energy expenditure and thermoregulation.
机译:G蛋白亚基Gqa和G-na(Gq/na)将受体与磷脂酶C偶联,导致细胞内钙增加。在这项研究中,我们调查了下丘脑背内侧(DMH)Gq/^a缺乏的后果,DMH是控制能量稳态的关键部位。通过立体定向将腺相关病毒(AAV)-Cre绿色荧光蛋白(GFP)注射到Gqanox/ilox:G^a'/~小鼠的DMH中,产生具有DMH特异性Gq/ria缺失(DMHGq/11KO)的小鼠。与DMH注射AAV-GFP的对照组小鼠相比,DMHGq/11KO小鼠出现了与能量消耗减少相关的肥胖症,而食物摄入或体力活动没有显著变化。DMHGq/11KO小鼠在黑素皮质素激动剂melanotan II急性刺激能量消耗或抑制食物摄入的能力方面没有缺陷。在室温(22小时)下,DMHGq/11KO小鼠棕色脂肪组织(BAT)和心脏的交感神经系统活性降低,伴随着基础BAT解偶联蛋白1{Ucp1)基因表达的降低和心率的降低。这些小鼠在急性暴露于寒冷(6小时持续5小时)时表现出耐寒性并且降低了冷刺激下BAT Ucp1基因的表达。DMHGq/11KO小鼠也未能适应逐渐下降的环境温度,并在腹股沟白色脂肪组织中形成脂肪细胞褐变,尽管它们的BAT Ucp1受到了相应的刺激。DMHGq/11KO小鼠在热中性条件下(30小时)的肥胖发病明显延迟,这与低温诱导的产热受损一致。因此,我们的结果表明,DMH中的Gqa和G^a是通过刺激能量消耗和体温调节来控制能量稳态所必需的。

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