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α2δ-1 在雌性小鼠腹内侧下丘脑对血糖和脂质平衡的控制中的性别特异性作用。

Sex-specific Effects of α2δ-1 in the Ventromedial Hypothalamus of Female Mice Controlling Glucose and Lipid Balance.

机构信息

Graduate Program in Biochemical and Molecular Nutrition, Friedman School of Nutrition Science and Policy, Tufts University, Boston, Massachusetts.

Graduate Program in Cell Molecular and Developmental Biology, Graduate School of Biomedical Sciences, Tufts University School of Medicine, Boston, Massachusetts.

出版信息

Endocrinology. 2020 Jul 1;161(7). doi: 10.1210/endocr/bqaa068.

Abstract

The thrombospondin receptor alpha2delta-1 (α2δ-1) plays essential roles promoting the activity of SF1 neurons in the ventromedial hypothalamus (VMH) and mediating glucose and lipid metabolism in male mice. Its role in the VMH of female mice remains to be defined, especially considering that this hypothalamic region is sexually dimorphic. We found that α2δ-1 depletion in SF1 neurons differentially affects glucose and lipid balance control and sympathetic tone in females compared to males. Mutant females show a modest increase in relative body weight gain when fed a high-fat diet (HFD) and normal energy expenditure, indicating that α2δ-1 is not a critical regulator of energy balance in females, similar to males. However, diminished α2δ-1 function in the VMH leads to enhanced glycemic control in females fed a chow diet, in contrast to the glucose intolerance reported previously in mutant males. Interestingly, the effects of α2δ-1 on glucose balance in females are influenced by diet. Accordingly, females but not males lacking α2δ-1 exhibit diminished glycemic control as well as susceptibility to hepatic steatosis when fed a HFD. Increased hepatic sympathetic tone and CD36 mRNA expression and reduced adiponectin levels underlie these diet-induced metabolic alterations in mutant females. The results indicate that α2δ-1 in VMH SF1 neurons critically regulates metabolic function through sexually dimorphic mechanisms. These findings are clinically relevant since metabolic alterations have been reported as a side effect in human patients prescribed gabapentinoid drugs, known to inhibit α2δ-1 function, for the treatment of seizure disorders, neuropathic pain, and anxiety disorders.

摘要

血栓反应蛋白受体 alpha2delta-1 (α2δ-1) 在促进腹内侧下丘脑 (VMH) 中 SF1 神经元的活性以及调节雄性小鼠的葡萄糖和脂质代谢方面发挥着重要作用。其在雌性小鼠 VMH 中的作用仍有待确定,尤其是考虑到这个下丘脑区域存在性别二态性。我们发现,SF1 神经元中 α2δ-1 的缺失会对雌性小鼠的葡萄糖和脂质平衡控制以及交感神经张力产生不同的影响,与雄性相比。然而,VMH 中 α2δ-1 功能的缺失会导致雌性小鼠在喂食高脂肪饮食 (HFD) 时相对体重增加适度增加,同时保持正常的能量消耗,这表明 α2δ-1 不是雌性能量平衡的关键调节剂,与雄性相似。然而,VMH 中 α2δ-1 功能的缺失会导致雌性小鼠在喂食标准饮食时血糖控制增强,与之前报道的雄性突变体的葡萄糖不耐受相反。有趣的是,α2δ-1 对雌性血糖平衡的影响受饮食的影响。因此,缺乏 α2δ-1 的雌性而不是雄性在喂食 HFD 时会出现血糖控制减弱以及易发生肝脂肪变性。增加的肝交感神经张力和 CD36 mRNA 表达以及降低的脂联素水平是这些饮食诱导的雌性突变体代谢改变的基础。这些结果表明,VMH SF1 神经元中的 α2δ-1 通过性别二态性机制对代谢功能进行严格调节。这些发现具有临床相关性,因为据报道,在人类患者中,服用加巴喷丁类药物(已知可抑制 α2δ-1 功能)治疗癫痫、神经病理性疼痛和焦虑障碍时,会出现代谢改变作为副作用。

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