重编程
限制
细胞生物学
NAD+激酶
生物
生物化学
α-酮戊二酸
类有机物
仿形(计算机编程)
细胞
化学
计算机科学
酶
操作系统
工程类
机械工程
作者
Qing Liu,Linqing Zhang,Zhen Chen,Yihan He,Yuhang Huang,Qiu Cui,Chengwen Zhu,Danxia Zhou,Zhenji Gan,Xia Gao,Guoqiang Wan
标识
DOI:10.1002/advs.202308032
摘要
Cochlear hair cells are the sensory cells responsible for transduction of acoustic signals. In mammals, damaged hair cells do not regenerate, resulting in permanent hearing loss. Reprogramming of the surrounding supporting cells to functional hair cells represent a novel strategy to hearing restoration. However, cellular processes governing the efficient and functional hair cell reprogramming are not completely understood. Employing the mouse cochlear organoid system, detailed metabolomic characterizations of the expanding and differentiating organoids are performed. It is found that hair cell differentiation is associated with increased mitochondrial electron transport chain (ETC) activity and reactive oxidative species generation. Transcriptome and metabolome analyses indicate reduced expression of oxidoreductases and tricyclic acid (TCA) cycle metabolites. The metabolic decoupling between ETC and TCA cycle limits the availability of the key metabolic cofactors, α-ketoglutarate (α-KG) and nicotinamide adenine dinucleotide (NAD
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