Hyperammonemia Enhances GABAergic Neurotransmission in Hippocampus: Underlying Mechanisms and Modulation by Extracellular cGMP

被引:0
作者
María Sancho-Alonso
Raquel Garcia-Garcia
Vicent Teruel-Martí
Marta Llansola
Vicente Felipo
机构
[1] Laboratory of Neurobiology,Anatomy and Human Embryology Department, Faculty of Medicine
[2] Centro de Investigación Príncipe Felipe,undefined
[3] University of Valencia,undefined
来源
Molecular Neurobiology | 2022年 / 59卷
关键词
GABA; receptor; GABA transporters; Inhibitory postsynaptic evoked potentials; Hippocampus; Hyperammonemia;
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学科分类号
摘要
Rats with chronic hyperammonemia reproduce the cognitive and motor impairment present in patients with hepatic encephalopathy. It has been proposed that enhanced GABAergic neurotransmission in hippocampus may contribute to impaired learning and memory in hyperammonemic rats. However, there are no direct evidences of the effects of hyperammonemia on GABAergic neurotransmission in hippocampus or on the underlying mechanisms. The aims of this work were to assess if chronic hyperammonemia enhances the function of GABAA receptors in hippocampus and to identify the underlying mechanisms. Activation of GABAA receptors is enhanced in hippocampus of hyperammonemic rats, as analyzed in a multielectrode array system. Hyperammonemia reduces membrane expression of the GABA transporters GAT1 and GAT3, which is associated with increased extracellular GABA concentration. Hyperammonemia also increases gephyrin levels and phosphorylation of the β3 subunit of GABAA receptor, which are associated with increased membrane expression of the GABAA receptor subunits α1, α2, γ2, β3, and δ. Enhanced levels of extracellular GABA and increased membrane expression of GABAA receptors would be responsible for the enhanced GABAergic neurotransmission in hippocampus of hyperammonemic rats. Increasing extracellular cGMP reverses the increase in GABAA receptors activation by normalizing the membrane expression of GABA transporters and GABAA receptors. The increased GABAergic neurotransmission in hippocampus would contribute to cognitive impairment in hyperammonemic rats. The results reported suggest that reducing GABAergic tone in hippocampus by increasing extracellular cGMP or by other means may be useful to improve cognitive function in hyperammonemia and in cirrhotic patients with minimal or clinical hepatic encephalopathy.
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页码:3431 / 3448
页数:17
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  • [11] Montoliu C(2015)GR3027 antagonizes GABAA receptor-potentiating neurosteroids and restores spatial learning and motor coordination in rats with chronic hyperammonemia and hepatic encephalopathy American J Physiol Gastrointest Liver Physiol 309 G400-27430
  • [12] Piedrafita B(2019)Bicuculline reduces neuroinflammation in hippocampus and improves spatial learning and anxiety in hyperammonemic rats Role Glutamate Receptors Front Pharmacol 10 132-343
  • [13] Serra MA(2000)GABA(A) receptors: immunocytochemical distribution of 13 subunits in the adult rat brain Neuroscience 101 815-197
  • [14] del Olmo JA(2013)Patterns of mRNA and protein expression for 12 GABAA receptor subunits in the mouse brain Neuroscience 236 345-5411
  • [15] Urios A(2017)Assembly rules for GABAA receptor complexes in the brain Elife 6 e27443-347
  • [16] Rodrigo JM(2012)γ-Aminobutyric acid type A (GABAA) receptor α subunits play a direct role in synaptic versus extrasynaptic targeting J Biol Chem 287 27417-146
  • [17] Felipo V(2008)GABA(A) receptor trafficking and its role in the dynamic modulation of neuronal inhibition Nat Rev Neurosci 9 331-394
  • [18] Cabrera-Pastor A(2020)Regulation of GABAA receptor subunit expression in substance use disorders Int J Mol Sci 21 4445-3465
  • [19] Llansola M(2018)Genetic and molecular regulation of extrasynaptic GABA-A receptors in the brain: therapeutic insights for epilepsy J Pharmacol Exp Ther 364 180-1358
  • [20] Montoliu C(2014)GABAA receptor α and γ subunits shape synaptic currents via different mechanisms J Biol Chem 289 5399-739