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将兴奋性氨基酸转运体2与其C末端相互作用组解偶联可恢复皮质纹状体突触处的突触谷氨酸清除,并减轻突变型亨廷顿蛋白诱导的运动减退。

Uncoupling the Excitatory Amino Acid Transporter 2 From Its C-Terminal Interactome Restores Synaptic Glutamate Clearance at Corticostriatal Synapses and Alleviates Mutant Huntingtin-Induced Hypokinesia.

作者信息

Hirschberg Stefan, Dvorzhak Anton, Rasooli-Nejad Seyed M A, Angelov Svilen, Kirchner Marieluise, Mertins Philipp, Lättig-Tünnemann Gilla, Harms Christoph, Schmitz Dietmar, Grantyn Rosemarie

机构信息

Synaptic Dysfunction Lab, Neuroscience Research Center, Charité - Universitätsmedizin Berlin, Corporate Member of Freie Universität Berlin, Humboldt-Universität zu Berlin, Berlin Institute of Health, Berlin, Germany.

Proteomics Platform, Max Delbrück Center for Molecular Medicine in the Helmholtz Association, Berlin, Germany.

出版信息

Front Cell Neurosci. 2022 Jan 31;15:792652. doi: 10.3389/fncel.2021.792652. eCollection 2021.

Abstract

Rapid removal of glutamate from the sites of glutamate release is an essential step in excitatory synaptic transmission. However, despite many years of research, the molecular mechanisms underlying the intracellular regulation of glutamate transport at tripartite synapses have not been fully uncovered. This limits the options for pharmacological treatment of glutamate-related motor disorders, including Huntington's disease (HD). We therefore investigated the possible binding partners of transgenic EAAT2 and their alterations under the influence of mutant huntingtin (mHTT). Mass spectrometry analysis after pull-down of striatal YFP-EAAT2 from wild-type (WT) mice and heterozygote (HET) Q175 mHTT-knock-in mice identified a total of 148 significant (FDR < 0.05) binders to full-length EAAT2. Of them 58 proteins exhibited mHTT-related differences. Most important, in 26 of the 58 mHTT-sensitive cases, protein abundance changed back toward WT levels when the mice expressed a C-terminal-truncated instead of full-length variant of EAAT2. These findings motivated new attempts to clarify the role of astrocytic EAAT2 regulation in cortico-basal movement control. Striatal astrocytes of Q175 HET mice were targeted by a PHP.B vector encoding EAAT2 with different degree of C-terminal modification, i.e., EAAT2-S506X (truncation at S506), EAAT2-4KR (4 lysine to arginine substitutions) or EAAT2 (full-length). The results were compared to HET and WT injected with a tag-only vector (CTRL). It was found that the presence of a C-terminal-modified EAAT2 transgene (i) increased the level of native EAAT2 protein in striatal lysates and perisynaptic astrocyte processes, (ii) enhanced the glutamate uptake of transduced astrocytes, (iii) stimulated glutamate clearance at individual corticostriatal synapses, (iv) increased the glutamate uptake of striatal astrocytes and (iv) alleviated the mHTT-related hypokinesia (open field indicators of movement initiation). In contrast, over-expression of full-length EAAT2 neither facilitated glutamate uptake nor locomotion. Together, our results support the new hypothesis that preventing abnormal protein-protein interactions at the C-terminal of EAAT2 could eliminate the mHTT-related deficits in corticostriatal synaptic glutamate clearance and movement initiation.

摘要

从谷氨酸释放位点快速清除谷氨酸是兴奋性突触传递中的关键步骤。然而,尽管经过多年研究,三方突触处谷氨酸转运的细胞内调节的分子机制仍未完全揭示。这限制了对包括亨廷顿病(HD)在内的谷氨酸相关运动障碍进行药物治疗的选择。因此,我们研究了转基因EAAT2可能的结合伴侣及其在突变型亨廷顿蛋白(mHTT)影响下的变化。从野生型(WT)小鼠和杂合子(HET)Q175 mHTT基因敲入小鼠的纹状体中拉下YFP-EAAT2后进行质谱分析,共鉴定出148个与全长EAAT2有显著结合(错误发现率<0.05)的蛋白。其中58种蛋白表现出与mHTT相关的差异。最重要的是,在58个对mHTT敏感的案例中,有26个案例中,当小鼠表达C端截短而非全长的EAAT2变体时,蛋白丰度恢复到野生型水平。这些发现促使人们做出新的尝试,以阐明星形胶质细胞EAAT2调节在皮质-基底节运动控制中的作用。用编码具有不同程度C端修饰的EAAT2的PHP.B载体靶向Q175 HET小鼠的纹状体星形胶质细胞,即EAAT2-S506X(在S506处截短)、EAAT2-4KR(4个赖氨酸突变为精氨酸)或EAAT2(全长)。将结果与注射仅含标签载体(CTRL)的HET和WT小鼠进行比较。发现存在C端修饰的EAAT2转基因(i)增加了纹状体裂解物和突触周围星形胶质细胞突起中天然EAAT2蛋白的水平,(ii)增强了转导星形胶质细胞对谷氨酸的摄取,(iii)刺激了单个皮质纹状体突触处的谷氨酸清除,(iv)增加了纹状体星形胶质细胞对谷氨酸的摄取,以及(iv)减轻了mHTT相关的运动减退(运动启动的旷场指标)。相比之下,全长EAAT2的过表达既没有促进谷氨酸摄取也没有促进运动。总之,我们的结果支持了一个新的假说,即防止EAAT2 C端异常的蛋白质-蛋白质相互作用可以消除mHTT相关的皮质纹状体突触谷氨酸清除和运动启动缺陷。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/a0b7/8841566/a2dcc2dcafdd/fncel-15-792652-g001.jpg

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