Govindpani Karan, Turner Clinton, Waldvogel Henry J, Faull Richard L M, Kwakowsky Andrea
Centre for Brain Research, Department of Anatomy and Medical Imaging, Faculty of Medical and Health Sciences, University of Auckland, Auckland 1023, New Zealand.
Department of Anatomical Pathology, LabPlus, Auckland City Hospital, Auckland 1023, New Zealand.
Int J Mol Sci. 2020 Nov 18;21(22):8704. doi: 10.3390/ijms21228704.
γ-aminobutyric acid (GABA) is the primary inhibitory neurotransmitter, playing a central role in the regulation of cortical excitability and the maintenance of the excitatory/inhibitory (E/I) balance. Several lines of evidence point to a remodeling of the cerebral GABAergic system in Alzheimer's disease (AD), with past studies demonstrating alterations in GABA receptor and transporter expression, GABA synthesizing enzyme activity and focal GABA concentrations in post-mortem tissue. AD is a chronic neurodegenerative disorder with a poorly understood etiology and the temporal cortex is one of the earliest regions in the brain to be affected by AD neurodegeneration. Utilizing NanoString nCounter analysis, we demonstrate here the transcriptional downregulation of several GABA signaling components in the post-mortem human middle temporal gyrus (MTG) in AD, including the GABA receptor α, α, α, α, β, β, β, δ, γ, γ, and θ subunits and the GABA receptor 2 (GABAR2) subunit. In addition to this, we note the transcriptional upregulation of the betaine-GABA transporter (BGT1) and GABA transporter 2 (GAT2), and the downregulation of the 67 kDa isoform of glutamate decarboxylase (GAD), the primary GABA synthesizing enzyme. The functional consequences of these changes require further investigation, but such alterations may underlie disruptions to the E/I balance that are believed to contribute to cognitive decline in AD.
γ-氨基丁酸(GABA)是主要的抑制性神经递质,在调节皮层兴奋性和维持兴奋/抑制(E/I)平衡中起核心作用。多项证据表明,阿尔茨海默病(AD)患者大脑中的GABA能系统发生了重塑,过去的研究表明,死后组织中的GABA受体和转运体表达、GABA合成酶活性以及局部GABA浓度均发生了改变。AD是一种病因不明的慢性神经退行性疾病,颞叶皮质是大脑中最早受AD神经退行性变影响的区域之一。利用NanoString nCounter分析技术,我们在此证明了AD患者死后大脑中颞叶回(MTG)中几种GABA信号成分的转录下调,包括GABA受体α、α、α、α、β、β、β、δ、γ、γ和θ亚基以及GABA受体2(GABAR2)亚基。除此之外,我们还注意到甜菜碱-GABA转运体(BGT1)和GABA转运体2(GAT2)的转录上调,以及主要的GABA合成酶谷氨酸脱羧酶(GAD)67 kDa异构体的下调。这些变化的功能后果需要进一步研究,但这种改变可能是导致E/I平衡破坏的基础,而E/I平衡破坏被认为与AD患者的认知衰退有关。