Dysregulated Transcript Expression but Not Function of the Glutamate Transporter EAAT2 in the Dorsolateral Prefrontal Cortex in Schizophrenia.

IF 5.3 1区 医学 Q1 PSYCHIATRY
Sinead M O'Donovan, Dan Shan, Xiaojun Wu, Jae Hyuk Choi, Robert E McCullumsmith
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Abstract

Background: Schizophrenia (SCZ) is a serious mental illness with complex pathology, including abnormalities in the glutamate system. Glutamate is rapidly removed from the synapse by excitatory amino acid transporters (EAATs). Changes in the expression and localization of the primary glutamate transporter EAAT2 are found in the brain in central nervous system (CNS) disorders including SCZ. We hypothesize that neuronal expression and function of EAAT2 are increased in the frontal cortex in subjects diagnosed with SCZ.

Study design: EAAT2 protein expression and glutamate transporter function were assayed in synaptosome preparations from the dorsolateral prefrontal cortex (DLPFC) of SCZ subjects and age- and sex-matched nonpsychiatrically ill controls. EAAT2 splice variant transcript expression was assayed in enriched populations of neurons and astrocytes from the DLPFC. Pathway analysis of publicly available transcriptomic datasets was carried out to identify biological changes associated with EAAT2 perturbation in different cell types.

Results: We found no significant changes in EAAT2 protein expression or glutamate uptake in the DLPFC in SCZ subjects compared with controls (n = 10/group). Transcript expression of EAAT2 and signaling molecules associated with EAAT2b trafficking (CaMKIIa and DLG1) were significantly altered in enriched populations of astrocytes and pyramidal neurons (P < .05) in SCZ (n = 16/group). These changes were not associated with antipsychotic medications. Pathway analysis also identified cell-type-specific enrichment of biological pathways associated with perturbation of astrocyte (immune pathways) and neuronal (metabolic pathways) EAAT2 expression.

Conclusions: Overall, these data support the growing body of evidence for the role of dysregulation of the glutamate system in the pathophysiology of SCZ.

精神分裂症患者背外侧前额叶皮层中谷氨酸转运体 EAAT2 的转录表达失调而功能未受影响
背景:精神分裂症(SCZ)是一种严重的精神疾病,病理复杂,包括谷氨酸系统异常。谷氨酸通过兴奋性氨基酸转运体(EAATs)迅速从突触中清除。在中枢神经系统(CNS)疾病(包括 SCZ)的大脑中,主要谷氨酸转运体 EAAT2 的表达和定位发生了变化。我们推测,被诊断为SCZ的受试者额叶皮质中EAAT2的神经元表达和功能会增加:研究设计:在 SCZ 受试者和年龄与性别匹配的非精神疾病对照组的背外侧前额叶皮层(DLPFC)突触体制备物中检测 EAAT2 蛋白表达和谷氨酸转运体功能。在 DLPFC 的神经元和星形胶质细胞富集群中检测了 EAAT2 剪接变体转录本的表达。我们对公开的转录组数据集进行了通路分析,以确定不同细胞类型中与 EAAT2 干扰相关的生物学变化:我们发现,与对照组相比(n = 10/组),SCZ 受试者 DLPFC 中的 EAAT2 蛋白表达或谷氨酸摄取均无明显变化。在星形胶质细胞和锥体神经元的富集群体中,EAAT2和与EAAT2b转运相关的信号分子(CaMKIIa和DLG1)的转录表达发生了显著变化(P 结论:我们发现,在星形胶质细胞和锥体神经元的富集群体中,EAAT2和与EAAT2b转运相关的信号分子的转录表达发生了显著变化:总之,这些数据支持越来越多的证据表明谷氨酸系统失调在 SCZ 病理生理学中的作用。
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来源期刊
Schizophrenia Bulletin
Schizophrenia Bulletin 医学-精神病学
CiteScore
11.40
自引率
6.10%
发文量
163
审稿时长
4-8 weeks
期刊介绍: Schizophrenia Bulletin seeks to review recent developments and empirically based hypotheses regarding the etiology and treatment of schizophrenia. We view the field as broad and deep, and will publish new knowledge ranging from the molecular basis to social and cultural factors. We will give new emphasis to translational reports which simultaneously highlight basic neurobiological mechanisms and clinical manifestations. Some of the Bulletin content is invited as special features or manuscripts organized as a theme by special guest editors. Most pages of the Bulletin are devoted to unsolicited manuscripts of high quality that report original data or where we can provide a special venue for a major study or workshop report. Supplement issues are sometimes provided for manuscripts reporting from a recent conference.
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