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中脑基底部下丘脑 PACAP 在体重和代谢控制中的作用。

The Role of Mediobasal Hypothalamic PACAP in the Control of Body Weight and Metabolism.

机构信息

Department of Surgery, University of Michigan, Ann Arbor, MI, USA.

Albert Einstein College of Medicine, Bronx, NY, USA.

出版信息

Endocrinology. 2021 Apr 1;162(4). doi: 10.1210/endocr/bqab012.

Abstract

Body energy homeostasis results from balancing energy intake and energy expenditure. Central nervous system administration of pituitary adenylate cyclase activating polypeptide (PACAP) dramatically alters metabolic function, but the physiologic mechanism of this neuropeptide remains poorly defined. PACAP is expressed in the mediobasal hypothalamus (MBH), a brain area essential for energy balance. Ventromedial hypothalamic nucleus (VMN) neurons contain, by far, the largest and most dense population of PACAP in the medial hypothalamus. This region is involved in coordinating the sympathetic nervous system in response to metabolic cues in order to re-establish energy homeostasis. Additionally, the metabolic cue of leptin signaling in the VMN regulates PACAP expression. We hypothesized that PACAP may play a role in the various effector systems of energy homeostasis, and tested its role by using VMN-directed, but MBH encompassing, adeno-associated virus (AAVCre) injections to ablate Adcyap1 (gene coding for PACAP) in mice (Adcyap1MBHKO mice). Adcyap1MBHKO mice rapidly gained body weight and adiposity, becoming hyperinsulinemic and hyperglycemic. Adcyap1MBHKO mice exhibited decreased oxygen consumption (VO2), without changes in activity. These effects appear to be due at least in part to brown adipose tissue (BAT) dysfunction, and we show that PACAP-expressing cells in the MBH can stimulate BAT thermogenesis. While we observed disruption of glucose clearance during hyperinsulinemic/euglycemic clamp studies in obese Adcyap1MBHKO mice, these parameters were normal prior to the onset of obesity. Thus, MBH PACAP plays important roles in the regulation of metabolic rate and energy balance through multiple effector systems on multiple time scales, which highlight the diverse set of functions for PACAP in overall energy homeostasis.

摘要

身体能量平衡是通过平衡能量摄入和能量消耗实现的。脑垂体腺苷酸环化酶激活肽(PACAP)的中枢神经系统给药显著改变了代谢功能,但这种神经肽的生理机制仍未得到明确界定。PACAP 在中脑基底部(MBH)表达,这是一个对能量平衡至关重要的脑区。迄今为止,腹内侧下丘脑核(VMN)神经元含有中脑内最大和最密集的 PACAP 群体。该区域参与协调交感神经系统对代谢信号的反应,以重新建立能量平衡。此外,VMN 中的瘦素信号代谢线索调节 PACAP 的表达。我们假设 PACAP 可能在能量平衡的各种效应系统中发挥作用,并通过使用 VMN 定向但包含 MBH 的腺相关病毒(AAVCre)注射来消融小鼠中的 Adcyap1(编码 PACAP 的基因)(Adcyap1MBHKO 小鼠)来测试其作用。Adcyap1MBHKO 小鼠体重和肥胖迅速增加,变得高胰岛素血症和高血糖。Adcyap1MBHKO 小鼠表现出耗氧量(VO2)降低,而活动没有变化。这些影响似乎至少部分归因于棕色脂肪组织(BAT)功能障碍,我们表明 MBH 中的 PACAP 表达细胞可以刺激 BAT 产热。虽然我们在肥胖的 Adcyap1MBHKO 小鼠中观察到高胰岛素/正常血糖钳夹研究中葡萄糖清除的中断,但这些参数在肥胖发生之前是正常的。因此,MBH PACAP 通过多种效应系统在多个时间尺度上对代谢率和能量平衡的调节发挥重要作用,这突出了 PACAP 在整体能量平衡中的一系列不同功能。

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