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在阿尔茨海默病中,早老素1/γ-分泌酶充当谷氨酸转运体EAAT2/GLT-1的异常伴侣蛋白。

PS1/gamma-secretase acts as rogue chaperone of glutamate transporter EAAT2/GLT-1 in Alzheimer's disease.

作者信息

Perrin Florian, Anderson Lauren C, Mitchell Shane P C, Sinha Priyanka, Turchyna Yuliia, Maesako Masato, Houser Mei C Q, Zhang Can, Wagner Steven L, Tanzi Rudolph E, Berezovska Oksana

机构信息

Massachusetts General Hospital.

VA San Diego Healthcare System.

出版信息

Res Sq. 2023 Nov 7:rs.3.rs-3495211. doi: 10.21203/rs.3.rs-3495211/v1.

Abstract

The recently discovered interaction between presenilin 1 (PS1), a catalytic subunit of γ-secretase responsible for the generation of amyloid-β(Aβ) peptides, and GLT-1, the major glutamate transporter in the brain (EAAT2 in the human) may provide a mechanistic link between two important pathological aspects of Alzheimer's disease (AD): abnormal Aβoccurrence and neuronal network hyperactivity. In the current study, we employed a FRET-based approach, fluorescence lifetime imaging microscopy (FLIM), to characterize the PS1/GLT-1 interaction in its native environment in the brain tissue of sporadic AD (sAD) patients. There was significantly less interaction between PS1 and GLT-1 in sAD brains, compared to tissue from patients with frontotemporal lobar degeneration (FTLD), or non-demented age-matched controls. Since PS1 has been shown to adopt pathogenic "closed" conformation in sAD but not in FTLD, we assessed the impact of changes in PS1 conformation on the interaction. Familial AD (fAD) PS1 mutations which induce a "closed" PS1 conformation similar to that in sAD brain and gamma-secretase modulators (GSMs) which induce a "relaxed" conformation, reduced and increased the interaction, respectively. This indicates that PS1 conformation seems to have a direct effect on the interaction with GLT-1. Furthermore, using biotinylation/streptavidin pull-down, western blotting, and cycloheximide chase assays, we determined that the presence of PS1 increased GLT-1 cell surface expression and GLT-1 homomultimer formation, but did not impact GLT-1 protein stability. Together, the current findings suggest that the newly described PS1/GLT-1 interaction endows PS1 with chaperone activity, modulating GLT-1 transport to the cell surface and stabilizing the dimeric-trimeric states of the protein. The diminished PS1/GLT-1 interaction suggests that these functions of the interaction may not work properly in AD.

摘要

早老素1(PS1)是γ-分泌酶的催化亚基,负责生成β淀粉样蛋白(Aβ)肽,最近发现它与大脑中的主要谷氨酸转运体GLT-1(人类中的EAAT2)之间的相互作用,可能为阿尔茨海默病(AD)的两个重要病理方面——异常Aβ产生和神经网络过度活跃之间提供一种机制联系。在本研究中,我们采用基于荧光共振能量转移(FRET)的方法,即荧光寿命成像显微镜(FLIM),来表征散发性AD(sAD)患者脑组织中天然环境下的PS1/GLT-1相互作用。与额颞叶变性(FTLD)患者的组织或年龄匹配的非痴呆对照相比,sAD大脑中PS1与GLT-1之间的相互作用明显减少。由于已证明PS1在sAD中会呈现致病性的“封闭”构象,而在FTLD中则不会,我们评估了PS1构象变化对相互作用的影响。诱导出类似于sAD大脑中“封闭”PS1构象的家族性AD(fAD)PS1突变以及诱导“松弛”构象的γ-分泌酶调节剂(GSMs),分别减少和增加了这种相互作用。这表明PS1构象似乎对与GLT-1的相互作用有直接影响。此外,通过生物素化/链霉亲和素下拉、蛋白质免疫印迹和放线菌酮追踪试验,我们确定PS1的存在增加了GLT-1细胞表面表达和GLT-1同源多聚体形成,但不影响GLT-1蛋白稳定性。总之,当前研究结果表明,新描述的PS1/GLT-1相互作用赋予PS1伴侣活性,调节GLT-1向细胞表面的转运并稳定该蛋白的二聚体-三聚体状态。PS1/GLT-1相互作用减弱表明,这种相互作用的这些功能在AD中可能无法正常发挥作用。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/e429/10659539/a67ee89e6971/nihpp-rs3495211v1-f0001.jpg

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