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与 AD 相关的患者来源 R47H TREM2 变体相关的小胶质细胞信号通路缺陷表明其无法激活炎症小体。

Microglial signalling pathway deficits associated with the patient derived R47H TREM2 variants linked to AD indicate inability to activate inflammasome.

机构信息

Department of Neuroinflammation, University College London, Queen Square Institute of Neurology, 1 Wakefield Street, London, WC1N 1PJ, UK.

Eisai Ltd, Mosquito Way, Hatfield, AL10 9SN, UK.

出版信息

Sci Rep. 2021 Jun 25;11(1):13316. doi: 10.1038/s41598-021-91207-1.

Abstract

The R47H variant of the microglial membrane receptor TREM2 is linked to increased risk of late onset Alzheimer's disease. Human induced pluripotent stem cell derived microglia (iPS-Mg) from patient iPSC lines expressing the AD-linked R47H TREM2 variant, common variant (Cv) or an R47H CRISPR edited line and its isogeneic control, demonstrated that R47H-expressing iPS-Mg expressed a deficit in signal transduction in response to the TREM2 endogenous ligand phosphatidylserine with reduced pSYK-pERK1/2 signalling and a reduced NLRP3 inflammasome response, (including ASC speck formation, Caspase-1 activation and IL-1beta secretion). Apoptotic cell phagocytosis and soluble TREM2 shedding were unaltered, suggesting a disjoint between these pathways and the signalling cascades downstream of TREM2 in R47H-expressing iPS-Mg, whilst metabolic deficits in glycolytic capacity and maximum respiration were reversed when R47H expressing iPS-Mg were exposed to PS+ expressing cells. These findings suggest that R47H-expressing microglia are unable to respond fully to cell damage signals such as phosphatidylserine, which may contribute to the progression of neurodegeneration in late-onset AD.

摘要

TREM2 小胶质细胞膜受体的 R47H 变体与晚期发病阿尔茨海默病风险增加有关。源自表达 AD 相关 R47H TREM2 变体、常见变体 (Cv) 或 R47H CRISPR 编辑系及其同基因对照的患者诱导多能干细胞衍生的小胶质细胞 (iPS-Mg) 表明,表达 R47H 的 iPS-Mg 在响应 TREM2 内源性配体磷脂酰丝氨酸时表现出信号转导缺陷,导致 pSYK-pERK1/2 信号降低和 NLRP3 炎症小体反应降低(包括 ASC 斑点形成、半胱天冬酶-1 激活和 IL-1β 分泌)。凋亡细胞吞噬作用和可溶性 TREM2 脱落没有改变,这表明在 R47H 表达的 iPS-Mg 中,这些途径与 TREM2 下游的信号级联之间存在脱节,而当 R47H 表达的 iPS-Mg 暴露于表达 PS+的细胞时,糖酵解能力和最大呼吸的代谢缺陷得到逆转。这些发现表明,表达 R47H 的小胶质细胞无法对磷脂酰丝氨酸等细胞损伤信号做出充分反应,这可能导致晚期发病 AD 中的神经退行性变进展。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/2fea/8233372/c671619cfd97/41598_2021_91207_Fig1_HTML.jpg

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