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首页> 外文期刊>Molecular Neurobiology >White Matter Microstructure in Bipolar Disorder Is Influenced by the Interaction between a Glutamate Transporter EAAT1 Gene Variant and Early Stress
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White Matter Microstructure in Bipolar Disorder Is Influenced by the Interaction between a Glutamate Transporter EAAT1 Gene Variant and Early Stress

机译:双极性障碍中的白质微观结构受谷氨酸转运蛋白eaat1基因变异和早期胁迫之间的相互作用的影响

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Glutamate is the principal excitatory neurotransmitter in the central nervous system. In mature brains, it is critically involved in neuroplasticity and, at high levels, neurotoxicity. The concentrations of glutamate in the extracellular space are maintained at low physiological levels by molecular glutamate transporters (excitatory amino acid transporters-EAATs). Adverse childhood experiences (ACEs) are highly reported in bipolar disorder (BD) and interact with the glutamatergic system in the brain. The aim of the study is to investigate the effect of a glutamate transporter polymorphism EAAT2-181AC (rs4354668) and exposure to ACE on white matter microstructure in patients with BD. We assessed 175 bipolar subjects using diffusion tensor imaging, Risky Families Questionnaire, and EEAT2 rs4354668 variants. We observed an interaction between ACE and rs4354668: carriers of the G allele showed lower axial diffusivity compared to T/T homozygotes when exposed to high stress and higher axial diffusivity than T/T when exposed to low stress. Since the mutant G allele has been associated with a reduced transcriptional activity and expression of the transporter protein, and early stress is associated with a reduced expression of the EAAT2, we could hypothesize that after exposure to high levels of ACE G/G homozygotes are more vulnerable to stress reporting the highest damage as a consequence of an excess of free glutamate.
机译:谷氨酸是中枢神经系统中的主要兴奋神经递质。在成熟的大脑中,它批判性地参与神经塑性,高水平,神经毒性。细胞外空间中谷氨酸浓度的浓度通过分子谷氨酸转运蛋白(兴奋性氨基酸转运蛋白)保持低生理水平。双极性障碍(BD)中高度报道了幼儿经验(ACE),并与大脑中的谷氨酸体系相互作用。该研究的目的是探讨谷氨酸转运蛋白多态性EAAT2-181A> C(RS4354668)的效果和暴露于BD患者白质微观结构的ACE。我们使用扩散张量成像,危险的家庭问卷和eeat2 rs4354668变体评估了175个双极对象。我们观察到ACE和RS4354668之间的相互作用:当暴露于低应力时,与T / T纯合并相比,G等位基因的载体显示出较低的轴向扩散性,并且在暴露于低应力时比T / T更高的轴向扩散。由于突变体G等位基因与转录活性的降低和转运蛋白的表达相关,并且早期应激与EAAT2的表达有关,我们可以假设暴露于高水平的Ace G / g纯合子后更多易于应力报告由于过量的自由谷氨酸的结果。

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