School of Basic Pharmaceutical and Toxicological Sciences, College of Pharmacy, University of Louisiana Monroe, Monroe, Louisiana.
Am J Physiol Regul Integr Comp Physiol. 2023 Jan 1;324(1):R20-R34. doi: 10.1152/ajpregu.00100.2022. Epub 2022 Nov 21.
Astrocytes store glycogen as energy and promote neurometabolic stability through supply of oxidizable l-lactate. Whether lactate regulates ventromedial hypothalamic nucleus (VMN) glucostatic function as a metabolic volume transmitter is unknown. Current research investigated whether G protein-coupled lactate receptor GPR81 controls astrocyte glycogen metabolism and glucose-regulatory neurotransmission in the ventrolateral VMN (VMNvl), where glucose-regulatory neurons reside. Female rats were pretreated by intra-VMN or scramble siRNA infusion before insulin or vehicle injection. VMNvl cell or tissue samples were acquired by laser-catapult- or micropunch microdissection for Western blot protein or uHPLC-electrospray ionization-mass spectrometric glycogen analyses. Data show that GPR81 regulates eu- and/or hypoglycemic patterns of VMNvl astrocyte glycogen metabolic enzyme and 5'-AMP-activated protein kinase (AMPK) protein expression according to VMNvl segment. GPR81 stimulates baseline rostral and caudal VMNvl glycogen accumulation but mediates glycogen breakdown in the former site during hypoglycemia. During euglycemia, GPR81 suppresses the transmitter marker neuronal nitric oxide synthase (nNOS) in rostral and caudal VMNvl nitrergic neurons, but stimulates (rostral VMNvl) or inhibits (caudal VMNvl) GABAergic neuron glutamate decarboxylase (GAD)protein. During hypoglycemia, GPR81 regulates AMPK activation in nitrergic and GABAergic neurons located in the rostral, but not caudal VMNvl. VMN knockdown amplified hypoglycemic hypercorticosteronemia, but not hyperglucagonemia. Results provide novel evidence that VMNvl astrocyte and glucose-regulatory neurons express GPR81 protein. Data identify neuroanatomical subpopulations of VMNvl astrocytes and glucose-regulatory neurons that exhibit differential reactivity to GPR81 input. Heterogeneous GPR81 effects during eu- versus hypoglycemia infer that energy state may affect cellular sensitivity to or postreceptor processing of lactate transmitter signaling.
星形胶质细胞将糖原作为能量储存,并通过供应可氧化的 l-乳酸来促进神经代谢稳定性。目前尚不清楚乳酸是否作为代谢容积递质来调节腹内侧下丘脑核(VMN)的糖稳态功能。当前的研究旨在调查 G 蛋白偶联的乳酸受体 GPR81 是否控制腹外侧 VMN(VMNvl)中的星形胶质细胞糖原代谢和葡萄糖调节神经递质传递,其中存在葡萄糖调节神经元。雌性大鼠在胰岛素或载体注射前通过 VMN 内注射或乱序 siRNA 预处理。通过激光弹射或微穿孔微切割获得 VMNvl 细胞或组织样品,用于 Western blot 蛋白或 uHPLC-电喷雾电离-质谱分析糖原。数据表明,GPR81 根据 VMNvl 节段调节 VMNvl 星形胶质细胞糖原代谢酶和 5'-AMP 激活蛋白激酶(AMPK)蛋白表达的正常血糖和低血糖模式。GPR81 刺激基线时 VMNvl 糖原积累的头侧和尾侧,但在低血糖期间在前部部位介导糖原分解。在正常血糖期间,GPR81 抑制头侧和尾侧 VMNvl 中的神经递质标记物神经元型一氧化氮合酶(nNOS)的 nitrergic 神经元,但刺激(头侧 VMNvl)或抑制(尾侧 VMNvl)GABA 能神经元谷氨酸脱羧酶(GAD)蛋白。在低血糖期间,GPR81 调节位于 VMNvl 头侧但不位于尾侧的 nitrergic 和 GABA 能神经元中的 AMPK 激活。VMN 敲低放大了低血糖性高皮质酮血症,但不放大高胰高血糖素血症。结果提供了新的证据,表明 VMNvl 星形胶质细胞和葡萄糖调节神经元表达 GPR81 蛋白。数据确定了 VMNvl 星形胶质细胞和葡萄糖调节神经元的神经解剖亚群,它们对 GPR81 输入表现出不同的反应性。在正常血糖与低血糖期间,GPR81 的异质性作用推断能量状态可能影响细胞对乳酸递质信号的敏感性或受体后处理。