Enhanced amygdala inhibitory neurotransmission and its vulnerability to hyperthermic stress in Atp1a2-deficient heterozygous mice.

IF 2.1 3区 医学 Q3 NEUROSCIENCES
Shin'Ichiro Satake, Shigefumi Yokota, Keiko Ikeda
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Abstract

The sodium pump (Na,K-ATPase, NKA) is a membrane-bound enzyme crucial for maintaining Na+/K+ electrochemical gradients across plasma membranes. NKA constitutes catalytic α and auxiliary β subunits, of which four α and three β isoforms have been identified. The physiological roles of the isoforms are not fully understood; nevertheless, mutations in the human α2 subunit gene ATP1A2 have been linked to various neurological disorders, including familial hemiplegic migraine type 2 (FHM2), alternating hemiplegia of childhood (AHC), and epilepsy syndromes, with symptoms typically triggered by physical and psychological stressors. Mice lacking Atp1a2 die of respiratory failure at birth, whereas heterozygous fetuses (Atp1a2+/-) survive and exhibit increased c-Fos expression in the principal excitatory neurons of the amygdala, suggesting increased neuronal activity. We compared neurotransmission properties in the basolateral amygdala (BLA) between juvenile Atp1a2+/- mice and their wild-type (WT) littermates using acute brain slices to elucidate the physiological significance of α2-NKA. Focal electrical stimulation elicited inhibitory and excitatory postsynaptic currents (IPSCs and EPSCs) in regularly spiking principal neurons within the BLA. Both IPSC and EPSC amplitudes increased linearly with stimulation intensity. IPSCs were consistently larger in Atp1a2+/- compared to WT, whereas EPSCs were comparable between the two groups. Notably, the enhanced inhibitory neurotransmission observed in Atp1a2+/- was abolished under hyperthermic stress. The disrupted balance between inhibition and excitation in BLA neuronal networks may be a key pathophysiological mechanism underlying α2-NKA-related disorders.

atp1a2缺陷杂合小鼠杏仁核抑制性神经传递增强及其对高温应激的易感性。
钠泵(Na,K- atp酶,NKA)是一种膜结合酶,对维持细胞膜上Na+/K+的电化学梯度至关重要。NKA由催化α亚基和辅助β亚基组成,其中已鉴定出4个α亚基和3个β亚基。这些同工异构体的生理作用尚不完全清楚;然而,人类α2亚基基因ATP1A2的突变与多种神经系统疾病有关,包括家族性偏瘫型偏头痛2型(FHM2)、儿童期交替偏瘫(AHC)和癫痫综合征,症状通常由生理和心理压力源引发。缺乏Atp1a2的小鼠在出生时死于呼吸衰竭,而杂合胎儿(Atp1a2+/-)存活下来,并在杏仁核主要兴奋神经元中表现出增加的c-Fos表达,表明神经元活性增加。我们通过急性脑切片比较幼年Atp1a2+/-小鼠和野生型(WT)幼鼠基底外侧杏仁核(BLA)的神经传递特性,以阐明α2-NKA的生理意义。局灶性电刺激在BLA内有规律的尖峰主神经元中引发抑制性和兴奋性突触后电流(IPSCs和EPSCs)。IPSC和EPSC振幅随刺激强度线性增加。与WT相比,Atp1a2+/-组的IPSCs始终更大,而两组之间的EPSCs具有可比性。值得注意的是,在高温应激下,Atp1a2+/-中观察到的抑制性神经传递增强被消除。BLA神经元网络抑制和兴奋之间的平衡被破坏可能是α2- nka相关疾病的关键病理生理机制。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
Journal of neurophysiology
Journal of neurophysiology 医学-神经科学
CiteScore
4.80
自引率
8.00%
发文量
255
审稿时长
2-3 weeks
期刊介绍: The Journal of Neurophysiology publishes original articles on the function of the nervous system. All levels of function are included, from the membrane and cell to systems and behavior. Experimental approaches include molecular neurobiology, cell culture and slice preparations, membrane physiology, developmental neurobiology, functional neuroanatomy, neurochemistry, neuropharmacology, systems electrophysiology, imaging and mapping techniques, and behavioral analysis. Experimental preparations may be invertebrate or vertebrate species, including humans. Theoretical studies are acceptable if they are tied closely to the interpretation of experimental data and elucidate principles of broad interest.
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