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TYROBP是一种用于TREM2和CR3受体的衔接蛋白,其缺乏在早期阿尔茨海默病病理小鼠模型中具有神经保护作用。

Deficiency of TYROBP, an adapter protein for TREM2 and CR3 receptors, is neuroprotective in a mouse model of early Alzheimer's pathology.

作者信息

Haure-Mirande Jean-Vianney, Audrain Mickael, Fanutza Tomas, Kim Soong Ho, Klein William L, Glabe Charles, Readhead Ben, Dudley Joel T, Blitzer Robert D, Wang Minghui, Zhang Bin, Schadt Eric E, Gandy Sam, Ehrlich Michelle E

机构信息

Department of Neurology, Icahn School of Medicine at Mount Sinai, New York, NY, 10029, USA.

Department of Biochemistry, Northwestern University, Chicago, IL, 60611, USA.

出版信息

Acta Neuropathol. 2017 Nov;134(5):769-788. doi: 10.1007/s00401-017-1737-3. Epub 2017 Jun 13.

Abstract

Conventional genetic approaches and computational strategies have converged on immune-inflammatory pathways as key events in the pathogenesis of late onset sporadic Alzheimer's disease (LOAD). Mutations and/or differential expression of microglial specific receptors such as TREM2, CD33, and CR3 have been associated with strong increased risk for developing Alzheimer's disease (AD). DAP12 (DNAX-activating protein 12)/TYROBP, a molecule localized to microglia, is a direct partner/adapter for TREM2, CD33, and CR3. We and others have previously shown that TYROBP expression is increased in AD patients and in mouse models. Moreover, missense mutations in the coding region of TYROBP have recently been identified in some AD patients. These lines of evidence, along with computational analysis of LOAD brain gene expression, point to DAP12/TYROBP as a potential hub or driver protein in the pathogenesis of AD. Using a comprehensive panel of biochemical, physiological, behavioral, and transcriptomic assays, we evaluated in a mouse model the role of TYROBP in early stage AD. We crossed an Alzheimer's model mutant APP /PSEN1 (APP/PSEN1) mouse model with Tyrobp mice to generate AD model mice deficient or null for TYROBP (APP/PSEN1; Tyrobp or APP/PSEN1; Tyrobp ). While we observed relatively minor effects of TYROBP deficiency on steady-state levels of amyloid-β peptides, there was an effect of Tyrobp deficiency on the morphology of amyloid deposits resembling that reported by others for Trem2 mice. We identified modulatory effects of TYROBP deficiency on the level of phosphorylation of TAU that was accompanied by a reduction in the severity of neuritic dystrophy. TYROBP deficiency also altered the expression of several AD related genes, including Cd33. Electrophysiological abnormalities and learning behavior deficits associated with APP/PSEN1 transgenes were greatly attenuated on a Tyrobp-null background. Some modulatory effects of TYROBP on Alzheimer's-related genes were only apparent on a background of mice with cerebral amyloidosis due to overexpression of mutant APP/PSEN1. These results suggest that reduction of TYROBP gene expression and/or protein levels could represent an immune-inflammatory therapeutic opportunity for modulating early stage LOAD, potentially leading to slowing or arresting the progression to full-blown clinical and pathological LOAD.

摘要

传统的遗传方法和计算策略都聚焦于免疫炎症途径,将其视为晚发性散发性阿尔茨海默病(LOAD)发病机制中的关键事件。小胶质细胞特异性受体如TREM2、CD33和CR3的突变和/或差异表达与患阿尔茨海默病(AD)的风险大幅增加有关。DAP12(DNAX激活蛋白12)/TYROBP是一种定位于小胶质细胞的分子,是TREM2、CD33和CR3的直接伴侣/衔接蛋白。我们和其他人之前已经表明,TYROBP在AD患者和小鼠模型中的表达增加。此外,最近在一些AD患者中发现了TYROBP编码区的错义突变。这些证据,连同对LOAD脑基因表达的计算分析,表明DAP12/TYROBP是AD发病机制中的潜在枢纽或驱动蛋白。我们使用了一系列全面的生化、生理、行为和转录组学检测方法,在小鼠模型中评估了TYROBP在AD早期阶段的作用。我们将阿尔茨海默病模型突变体APP /PSEN1 (APP/PSEN1)小鼠模型与Tyrobp 小鼠杂交,以生成TYROBP缺陷或缺失的AD模型小鼠(APP/PSEN1; Tyrobp 或APP/PSEN1; Tyrobp )。虽然我们观察到TYROBP缺陷对淀粉样β肽稳态水平的影响相对较小,但Tyrobp缺陷对淀粉样沉积物形态有影响,类似于其他人报道的Trem2 小鼠的情况。我们确定了TYROBP缺陷对TAU磷酸化水平的调节作用,同时神经突营养不良的严重程度降低。TYROBP缺陷还改变了包括Cd33在内的几个AD相关基因的表达。与APP/PSEN1转基因相关的电生理异常和学习行为缺陷在Tyrobp缺失背景下大大减轻。TYROBP对阿尔茨海默病相关基因的一些调节作用仅在因突变APP/PSEN1过表达而患有脑淀粉样变性的小鼠背景下才明显。这些结果表明,降低TYROBP基因表达和/或蛋白质水平可能代表一种调节LOAD早期阶段的免疫炎症治疗机会,有可能减缓或阻止其发展为全面的临床和病理LOAD。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/55e1/5645450/bb09bb38badc/401_2017_1737_Fig1_HTML.jpg

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