Gba1 E326K 可导致运动和非运动症状,并伴有病理性 α-syn、tau 和神经胶质激活。

IF 10.6 1区 医学 Q1 CLINICAL NEUROLOGY Brain Pub Date : 2024-12-03 DOI:10.1093/brain/awae222
Sin Ho Kweon, Hye Guk Ryu, Seung-Hwan Kwon, Hyeonwoo Park, Saebom Lee, Nam-Shik Kim, Shi-Xun Ma, Hee-Jung Jee, Sangjune Kim, Han Seok Ko
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引用次数: 0

摘要

GBA1 基因突变是帕金森病(PD)的常见遗传风险因素,它会破坏酶的活性并导致溶酶体功能障碍,从而导致α-突触核蛋白(α-syn)水平升高。虽然 GBA1 在突触核蛋白病中的作用已得到证实,但最近的研究强调神经炎症是 GBA1 缺乏症的一个重要致病机制。本研究调查了 Gba1 E326K 基因敲入小鼠的神经炎症,该模型与帕金森病和痴呆症风险增加有关。在小鼠9个月和24个月时,我们使用免疫组化(IHC)、Western blot(WB)和GCase检测法评估了小鼠腹侧中脑和海马的GBA1蛋白和活性、α-突触核蛋白病理学、神经变性、运动障碍和胶质细胞增生。此外,用α-syn预成纤维(PFF)处理WT和GBA1E326K/E326K小鼠的原代小胶质细胞,通过qPCR、WB和免疫细胞化学分析研究小胶质细胞活化、促炎细胞因子、反应性星形胶质细胞形成和神经元死亡。我们还评估了 Gba1 E326K 小鼠 7 个月时肠道接种 α-syn PFF 和 10 个月时纹状体接种 α-syn PFF 的影响,通过行为测试、IHC 和 WB 分析评估运动/非运动症状、α-syn 病理、神经炎症、神经胶质细胞增生和神经退行性变。24 个月时,Gba1 E326K 基因敲入小鼠的 GCase 酶活性降低,腹侧中脑和海马中的葡萄糖甘油酰胺堆积。经病理α-syn PFF 处理的 Gba1 E326K 小鼠的小胶质细胞和星形胶质细胞中观察到促炎细胞因子和反应性星形胶质细胞增加。从肠道接种α-syn PFF会增加海马齿状回中路易体的积累,加剧小胶质细胞和星形胶质细胞的活化,并使非运动症状恶化。在Gba1 E326K小鼠的前额叶皮层和海马中,α-syn预成纤维注射引起运动障碍、反应性神经胶质蛋白积累和tauopathy。Gba1 E326K突变导致的GBA1缺乏会加剧神经炎症并促进致病性α-突触核蛋白的传递,从而加剧帕金森病模型的病理变化。这项研究加深了我们对Gba1 E326K突变如何导致神经炎症和致病性α-syn在大脑中传播的理解,为帕金森病和相关突触核蛋白病提出了新的治疗策略。
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Gba1 E326K renders motor and non-motor symptoms with pathological α-synuclein, tau and glial activation.

Mutations in the GBA1 gene are common genetic risk factors for Parkinson's disease, disrupting enzymatic activity and causing lysosomal dysfunction, leading to elevated α-synuclein levels. Although the role of GBA1 in synucleinopathy is well established, recent research underscores neuroinflammation as a significant pathogenic mechanism in GBA1 deficiency. This study investigates neuroinflammation in Gba1 E326K knock-in mice, a model associated with increased risk of Parkinson's disease and dementia. At 9 and 24 months, we assessed GBA1 protein and activity, α-synuclein pathology, neurodegeneration, motor deficits and gliosis in the ventral midbrain and hippocampus using immunohistochemistry, western blot and glucocerebrosidase assays. Additionally, primary microglia from wild-type and Gba1E326K/E326K mice were treated with α-synuclein preformed fibrils to study microglia activation, pro-inflammatory cytokines, reactive astrocyte formation and neuronal death through quantitative PCR, western blot and immunocytochemistry analyses. We also evaluated the effects of gut inoculation of α-synuclein preformed fibrils in Gba1 E326K mice at 7 months and striatal inoculation at 10 months after injection, assessing motor/non-motor symptoms, α-synuclein pathology, neuroinflammation, gliosis and neurodegeneration via behavioural tests, immunohistochemistry and western blot assays. At 24 months, Gba1 E326K knock-in mice showed reduced glucocerebrosidase enzymatic activity and glucosylceramide build-up in the ventral midbrain and hippocampus. Increased pro-inflammatory cytokines and reactive astrocytes were observed in microglia and astrocytes from Gba1 E326K mice treated with pathological α-synuclein preformed fibrils. Gut inoculation of α-synuclein preformed fibrils increased Lewy body accumulation in the hippocampal dentate gyrus, with heightened microglia and astrocyte activation and worsened non-motor symptoms. Intrastriatal injection of α-synuclein preformed fibrils induced motor deficits, reactive glial protein accumulation and tauopathy in the prefrontal cortex and hippocampus of Gba1 E326K mice. GBA1 deficiency attributable to the Gba1 E326K mutation exacerbates neuroinflammation and promotes pathogenic α-synuclein transmission, intensifying disease pathology in Parkinson's disease models. This study enhances our understanding of how the Gba1 E326K mutation contributes to neuroinflammation and the spread of pathogenic α-synuclein in the brain, suggesting new therapeutic strategies for Parkinson's disease and related synucleinopathies.

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来源期刊
Brain
Brain 医学-临床神经学
CiteScore
20.30
自引率
4.10%
发文量
458
审稿时长
3-6 weeks
期刊介绍: Brain, a journal focused on clinical neurology and translational neuroscience, has been publishing landmark papers since 1878. The journal aims to expand its scope by including studies that shed light on disease mechanisms and conducting innovative clinical trials for brain disorders. With a wide range of topics covered, the Editorial Board represents the international readership and diverse coverage of the journal. Accepted articles are promptly posted online, typically within a few weeks of acceptance. As of 2022, Brain holds an impressive impact factor of 14.5, according to the Journal Citation Reports.
期刊最新文献
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