生物
线粒体
秀丽隐杆线虫
调解人
神经保护
转录组
细胞生物学
机制(生物学)
神经退行性变
线粒体DNA
疾病
维生素B12
蛋白质稳态
蛋白质组学
品脱1
氧化应激
细胞模型
粒线体疾病
高铁F1
转录因子
线粒体生物发生
活性氧
细胞保护
细胞代谢
内在因素
神经科学
B族维生素
戒毒(替代医学)
表观遗传学
兴奋毒性
调节器
原癌基因蛋白质c-myc
新陈代谢
作者
Qihui Huang,Junjie Fu,Lizhu Zhang,Jingyue Yao,Hui Cao,Lingjun Zheng,Chao Zhao,Jianbo Xiao
标识
DOI:10.1021/acs.jafc.6c07935
摘要
Abstract Alzheimer’s disease (AD) is a highly sophisticated disease associated with mitochondrial deterioration, which potentiates proteotoxic stress and accelerates neuronal decline. Vitamin B12 (B12), an essential cofactor in one-carbon metabolism and cellular homeostasis, plays a pivotal role in modulating neurodegenerative pathology. Here, we established a mitochondrial-associated AD model by using Caenorhabditis elegans (C. elegans) expressing Aβ combining with the mtDNA deletion uaDf5, and evaluated the effect of B12 as a metabolic modulator of neurodegenerative stress. We observed that mitochondrial dysfunction markedly exacerbated Aβ phenotypes, while B12 mitigated paralysis and cellular deficits. Integrated transcriptomics and proteomics revealed a compensatory mechanism activated by B12 under mitochondrial stress, predominantly engaging one-carbon and transsulfuration pathways. Functional analyses uncovered that metr-1 and cysl-2 are required for B12-mediated protection, and multiomics corroborated this rescue axis. This study indicates that cysl-2 is an essential mediator and reveals a B12-driven adaptive response, which provides mechanistic insight into nutrition-based neuroprotection in AD.
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