首页> 外文期刊>Neuropeptides: An International Journal >Role of hindbrain adenosine 5′-monophosphate-activated protein kinase (AMPK) in hypothalamic AMPK and metabolic neuropeptide adaptation to recurring insulin-induced hypoglycemia in the male rat
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Role of hindbrain adenosine 5′-monophosphate-activated protein kinase (AMPK) in hypothalamic AMPK and metabolic neuropeptide adaptation to recurring insulin-induced hypoglycemia in the male rat

机译:后脑腺苷5'-单磷酸蛋白激活蛋白激酶(AMPK)在丘脑中的作用和代谢神经肽适应在雄性大鼠中重复胰岛素诱导的低血糖

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Abstract Glucose counter-regulatory dysfunction correlates with impaired activation of the hypothalamic metabolic sensor adenosine 5′-monophosphate-activated protein kinase (AMPK). Hypothalamic AMPK is controlled by hindbrain energy status; we examined here whether hindbrain AMPK regulates hypothalamic AMPK and metabolic neurotransmitter maladaptation to recurring insulin-induced hypoglycemia (RIIH). Brain tissue was harvested after single versus serial insulin (I) dosing for Western blot analysis of AMPK, phospho-AMPK (pAMPK), and relevant biosynthetic enzyme/neuropeptide expression in micro-punch dissected arcuate (ARH), ventromedial (VMH), dorsomedial (DMH) nuclei and lateral hypothalamic area (LHA) tissue. The AMPK inhibitor compound c (Cc) or vehicle was administered to the caudal fourth ventricle ahead of antecedent I injections. RIIH caused site-specific elevation (ARH, VMH, LHA) or reduction (DMH) of total AMPK protein versus acute hypoglycemia; Cc respectively exacerbated or attenuated this response in the ARH and VMH. Hindbrain AMPK correspondingly inhibited or stimulated LHA and DMH pAMPK expression during RIIH. RIIH elicited Cc-reversible augmentation of VMH glutamate decarboxylase profiles, but stimulated (ARH pro-opiomelanocortin; LHA orexin-A) or decreased (VMH nitric oxide synthase) other metabolic neurotransmitters without hindbrain sensor involvement. Results demonstrate acclimated up-regulation of total AMPK protein expression in multiple hypothalamic loci during RIIH, and document hindbrain sensor contribution to amplification of this protein profile in the VMH. Concurrent lack of net change in ARH and VMH tissue pAMPK implies adaptive reductions in local sensor activity, which may/may not reflect positive gain in energy state. It remains unclear if ‘glucose-excited’ VMH GABAergic and/or ARH pro-opiomelanocortin neurons exhibit AMPK habituation to RIIH, and whether diminished sensor activation in these and other mediobasal hypothalamic neurotransmitter populations may contribute to HAAF. Highlights ? Impaired hypothalamic AMPK activity correlates with glucose counter-regulatory dysfunction. ? Micro-punched forebrain loci were analyzed by Western blot after single or serial insulin dosing. ? Caudal hindbrain AMPK was inhibited by compound c (Cc) ahead of antecedent insulin doses. ? Recurring hypoglycemia (RH) caused Cc-reversible up-regulated ventromedial hypothalamic AMPK. ? Hindbrain AMPK regulates select ventromedial hypothalamic metabolic transmitter adaptation to RH.
机译:摘要葡萄糖反调节功能障碍与下丘脑代谢传感器腺苷5'-单磷酸活化蛋白激酶(AMPK)的损伤活化相关。下丘脑AMPK由后脑能量状态控制;我们在此检查后脑AMPK是否调节下丘脑AMPK和代谢神经递质的治疗反复出现的胰岛素诱导的低血糖(RIIH)。在单一与串行胰岛素(i)后收获脑组织,用于蛋白质印迹分析,用于AMPK,磷酸-AMPK(Pampk)和相关的生物合成酶/神经肽表达在微冲击解剖弓形(ARH),口腔内(VMH),背侧部分(DMH)核和侧面下丘脑区域(LHA)组织。 AMPK抑制剂化合物C(CC)或载体在前进的I注射之前施用于尾部第四脑室。 RIIH引起总AMPK蛋白的特异性升高(ARH,VMH,LHA)或减少(DMH)与急性低血糖症; CC分别在ARH和VMH中加剧或减弱该响应。后脑AMPK在RIIH期间相应地抑制或刺激了LHA和DMH PAMPK表达。 RIIH引发的CC-Reversible VMH谷氨酸脱羧酶谱的增强,但刺激(ARH Pro-Opiomelanocortin; LHA Orexin-A)或降低(VMH一氧化氮合酶)其他代谢神经递质,没有后脑传感器受累。结果表明,在RIIH期间,在多个下丘脑基因座中依赖于总AMPK蛋白表达的升高调节,并记录了后脑传感器在VMH中扩增该蛋白质谱的贡献。 ARH和VMH组织PAMPK同时缺乏净变化意味着局部传感器活动的自适应减少,其可能/可能不会反映能量状态的正增益。如果“葡萄糖激发的”VMH Gabaergic和/或ARH Pro-Omiomelanocortin神经元表现出AMPK习性,并且在这些和其他Mediobasal下丘脑神经递质群体中的传感器激活减少可能有助于Haaf的情况下,仍然不清楚。强调 ?受损的下丘脑AMPK活性与葡萄糖反调节功能障碍相关。还在单一或连续胰岛素给药后,通过蛋白质印迹分析微冲孔前脑基因座。还在先前胰岛素剂量之前,化合物C(CC)抑制了尾状后脑AMPK。还反复出现的低血糖(RH)引起CC-Reversible上调的腹侧下丘脑AMPK。还后脑AMPK调节选择腹侧下丘脑代谢变送器适应RH。

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