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精神分裂症中中脑 GABA 能神经元和多巴胺神经元标志物减少有关。

Reductions in midbrain GABAergic and dopamine neuron markers are linked in schizophrenia.

机构信息

Schizophrenia Research Laboratory, Neuroscience Research Australia, 139 Barker Street, Margarete Ainsworth Building, Level 5, Randwick, NSW, 2031, Australia.

School of Psychiatry, Faculty of Medicine, University of New South Wales, Sydney, NSW, 2052, Australia.

出版信息

Mol Brain. 2021 Jun 26;14(1):96. doi: 10.1186/s13041-021-00805-7.

Abstract

Reductions in the GABAergic neurotransmitter system exist across multiple brain regions in schizophrenia and encompass both pre- and postsynaptic components. While reduced midbrain GABAergic inhibitory neurotransmission may contribute to the hyperdopaminergia thought to underpin psychosis in schizophrenia, molecular changes consistent with this have not been reported. We hypothesised that reduced GABA-related molecular markers would be found in the midbrain of people with schizophrenia and that these would correlate with dopaminergic molecular changes. We hypothesised that downregulation of inhibitory neuron markers would be exacerbated in schizophrenia cases with high levels of neuroinflammation. Eight GABAergic-related transcripts were measured with quantitative PCR, and glutamate decarboxylase (GAD) 65/67 and GABA alpha 3 (α3) (GABRA3) protein were measured with immunoblotting, in post-mortem midbrain (28/28 and 28/26 control/schizophrenia cases for mRNA and protein, respectively), and analysed by both diagnosis and inflammatory subgroups (as previously defined by higher levels of four pro-inflammatory cytokine transcripts). We found reductions (21 - 44%) in mRNA encoding both presynaptic and postsynaptic proteins, vesicular GABA transporter (VGAT), GAD1, and parvalbumin (PV) mRNAs and four alpha subunits (α1, α2, α3, α5) of the GABA receptor in people with schizophrenia compared to controls (p < 0.05). Gene expression of somatostatin (SST) was unchanged (p = 0.485). We confirmed the reduction in GAD at the protein level (34%, p < 0.05). When stratifying by inflammation, only GABRA3 mRNA exhibited more pronounced changes in high compared to low inflammatory subgroups in schizophrenia. GABRA3 protein was expressed by 98% of tyrosine hydroxylase-positive neurons and was 23% lower in schizophrenia, though this did not reach statistical significance (p > 0.05). Expression of transcripts for GABA receptor alpha subunits 2 and 3 (GABRA2, GABRA3) were positively correlated with tyrosine hydroxylase (TH) and dopamine transporter (DAT) transcripts in schizophrenia cases (GABRA2; r > 0.630, GABRA3; r > 0.762, all p < 0.001) but not controls (GABRA2; r < - 0.200, GABRA3; r < 0.310, all p > 0.05). Taken together, our results support a profound disruption to inhibitory neurotransmission in the substantia nigra regardless of inflammatory status, which provides a potential mechanism for disinhibition of nigrostriatal dopamine neurotransmission.

摘要

在精神分裂症中,多个脑区的 GABA 能神经递质系统减少,包括突触前和突触后成分。虽然中脑 GABA 能抑制性神经传递的减少可能导致被认为是精神分裂症精神病基础的多巴胺能亢进,但尚未报道与之一致的分子变化。我们假设精神分裂症患者的中脑中会发现与 GABA 相关的分子标记减少,并且这些标记与多巴胺能分子变化相关。我们假设,在具有高水平神经炎症的精神分裂症病例中,抑制性神经元标记的下调会加剧。使用定量 PCR 测量了 8 种 GABA 相关转录本,使用免疫印迹测量了谷氨酸脱羧酶(GAD)65/67 和 GABA alpha 3(α3)(GABRA3)蛋白,分别在尸检中脑(mRNA 分别为 28/28 和 28/26 对照/精神分裂症病例,蛋白为 28/28 和 28/26 对照/精神分裂症病例),并通过诊断和炎症亚组进行分析(如先前通过四个促炎细胞因子转录本的较高水平定义)。我们发现与对照组相比,精神分裂症患者的前突触和后突触蛋白、囊泡 GABA 转运体(VGAT)、GAD1 和 Parvalbumin(PV)mRNA 以及 GABA 受体的四个α亚基(α1、α2、α3、α5)的 mRNA 编码减少(21-44%)(p<0.05)。生长抑素(SST)的基因表达不变(p=0.485)。我们在蛋白质水平证实了 GAD 的减少(34%,p<0.05)。当按炎症分层时,只有 GABRA3 mRNA 在精神分裂症的高炎症亚组中表现出更为明显的变化。GABRA3 蛋白由 98%的酪氨酸羟化酶阳性神经元表达,在精神分裂症中降低了 23%,尽管这没有达到统计学意义(p>0.05)。GABA 受体α亚基 2 和 3(GABRA2、GABRA3)的转录本的表达与精神分裂症病例中的酪氨酸羟化酶(TH)和多巴胺转运蛋白(DAT)转录本呈正相关(GABRA2;r>0.630,GABRA3;r>0.762,均 p<0.001),但与对照组无关(GABRA2;r<0.200,GABRA3;r<0.310,均 p>0.05)。总之,我们的结果支持无论炎症状态如何,黑质中抑制性神经传递都受到严重破坏,这为黑质纹状体多巴胺神经传递的去抑制提供了潜在机制。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/114b/8235806/78d0a7a0e558/13041_2021_805_Fig1_HTML.jpg

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