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散发性帕金森病人类细胞模型中的代谢低下可逆状态。

A reversible state of hypometabolism in a human cellular model of sporadic Parkinson's disease.

机构信息

Institute of Developmental Genetics, Helmholtz Zentrum München, Neuherberg, Germany.

Munich Institute of Biomedical Engineering, Department of Chemistry, Technical University of Munich, Munich, Germany.

出版信息

Nat Commun. 2023 Nov 23;14(1):7674. doi: 10.1038/s41467-023-42862-7.

Abstract

Sporadic Parkinson's Disease (sPD) is a progressive neurodegenerative disorder caused by multiple genetic and environmental factors. Mitochondrial dysfunction is one contributing factor, but its role at different stages of disease progression is not fully understood. Here, we showed that neural precursor cells and dopaminergic neurons derived from induced pluripotent stem cells (hiPSCs) from sPD patients exhibited a hypometabolism. Further analysis based on transcriptomics, proteomics, and metabolomics identified the citric acid cycle, specifically the α-ketoglutarate dehydrogenase complex (OGDHC), as bottleneck in sPD metabolism. A follow-up study of the patients approximately 10 years after initial biopsy demonstrated a correlation between OGDHC activity in our cellular model and the disease progression. In addition, the alterations in cellular metabolism observed in our cellular model were restored by interfering with the enhanced SHH signal transduction in sPD. Thus, inhibiting overactive SHH signaling may have potential as neuroprotective therapy during early stages of sPD.

摘要

散发性帕金森病(sPD)是一种由多种遗传和环境因素引起的进行性神经退行性疾病。线粒体功能障碍是一个促成因素,但它在疾病进展的不同阶段的作用尚不完全清楚。在这里,我们表明,来自 sPD 患者的诱导多能干细胞(hiPSC)衍生的神经前体细胞和多巴胺能神经元表现出代谢低下。基于转录组学、蛋白质组学和代谢组学的进一步分析确定了柠檬酸循环,特别是α-酮戊二酸脱氢酶复合物(OGDHC),是 sPD 代谢的瓶颈。对初始活检后约 10 年的患者进行的后续研究表明,我们细胞模型中的 OGDHC 活性与疾病进展之间存在相关性。此外,我们在细胞模型中观察到的细胞代谢改变可以通过干扰 sPD 中增强的 SHH 信号转导来恢复。因此,抑制过度活跃的 SHH 信号可能具有作为 sPD 早期神经保护治疗的潜力。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/7ac6/10667251/f5f91405e701/41467_2023_42862_Fig1_HTML.jpg

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