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HACE1 对于星形胶质细胞线粒体功能至关重要,并影响体内亨廷顿病表型。

HACE1 is essential for astrocyte mitochondrial function and influences Huntington disease phenotypes in vivo.

机构信息

Department of Medical Genetics, Centre for Molecular Medicine and Therapeutics (CMMT), CFRI, University of British Columbia, Vancouver, BC V5Z 4H4, Canada.

出版信息

Hum Mol Genet. 2018 Jan 15;27(2):239-253. doi: 10.1093/hmg/ddx394.

Abstract

Oxidative stress is a prominent feature of Huntington disease (HD), and we have shown previously that reduced levels of hace1 (HECT domain and Ankyrin repeat containing E3 ubiquitin protein ligase 1) in patient striatum may contribute to the pathogenesis of HD. Hace1 promotes the stability of Nrf2 and thus plays an important role in antioxidant response mechanisms, which are dysfunctional in HD. Moreover, hace1 overexpression mitigates mutant huntingtin (mHTT)-induced oxidative stress in vitro through promotion of the Nrf2 antioxidant response. Here, we show that the genetic ablation of hace1 in the YAC128 mouse model of HD accelerates motor deficits and exacerbates cognitive and psychiatric phenotypes in vivo. We find that both the expression of mHTT and the ablation of hace1 alone are sufficient to cause deficits in astrocytic mitochondrial respiration. We confirm the crucial role of hace1 in astrocytes in vivo, since its ablation is sufficient to cause dramatic astrogliosis in wild-type FVB/N mice. Astrogliosis is not observed in the presence of mHTT but a strong dysregulation in the expression of astrocytic markers in HACE1-/- x YAC128 striatum suggests an additive effect of mHTT expression and hace1 loss on this cell type. HACE1-/- x YAC128 mice and primary cells derived from these animals therefore provide model systems that will allow for the further dissection of Nrf2 pathways and astrocyte dysfunction in the context of HD.

摘要

氧化应激是亨廷顿病 (HD) 的一个显著特征,我们之前已经表明,患者纹状体中 hade1(HECT 结构域和含锚蛋白重复的 E3 泛素蛋白连接酶 1)水平降低可能导致 HD 的发病机制。Hade1 促进 Nrf2 的稳定性,因此在抗氧化反应机制中发挥重要作用,而这些机制在 HD 中是功能失调的。此外,hade1 的过表达通过促进 Nrf2 抗氧化反应,减轻体外突变 huntingtin(mHTT)诱导的氧化应激。在这里,我们表明,HD 的 YAC128 小鼠模型中 hade1 的基因缺失加速了运动缺陷,并在体内加剧了认知和精神表型。我们发现,mHTT 的表达和 hade1 的单独缺失都足以导致星形胶质细胞线粒体呼吸缺陷。我们确认了 hade1 在体内星形胶质细胞中的关键作用,因为其缺失足以在野生型 FVB/N 小鼠中引起明显的星形胶质细胞增生。在存在 mHTT 的情况下不会观察到星形胶质细胞增生,但 HACE1-/-xYAC128 纹状体中星形胶质细胞标志物的强烈失调表明 mHTT 表达和 hade1 缺失对这种细胞类型有相加作用。因此,HACE1-/-xYAC128 小鼠和源自这些动物的原代细胞提供了模型系统,可进一步研究 Nrf2 途径和 HD 背景下的星形胶质细胞功能障碍。

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