柠檬酸循环
神经退行性变
生物
线粒体
共核细胞病
酶
细胞生物学
S-亚硝基化
氧化磷酸化
生物化学
帕金森病
α-突触核蛋白
疾病
半胱氨酸
医学
病理
作者
Paschalis‐Thomas Doulias,Hongmei Yang,Alexander Y. Andreyev,Nima Dolatabadi,Henry Scott,Charlene K Raspur,Parth R. Patel,Tomohiro Nakamura,Steven R. Tannenbaum,Harry Ischiropoulos,Stuart A. Lipton
标识
DOI:10.1016/j.chembiol.2023.06.018
摘要
A causal relationship between mitochondrial metabolic dysfunction and neurodegeneration has been implicated in synucleinopathies, including Parkinson disease (PD) and Lewy body dementia (LBD), but underlying mechanisms are not fully understood. Here, using human induced pluripotent stem cell (hiPSC)-derived neurons with mutation in the gene encoding α-synuclein (αSyn), we report the presence of aberrantly S-nitrosylated proteins, including tricarboxylic acid (TCA) cycle enzymes, resulting in activity inhibition assessed by carbon-labeled metabolic flux experiments. This inhibition principally affects α-ketoglutarate dehydrogenase/succinyl coenzyme-A synthetase, metabolizing α-ketoglutarate to succinate. Notably, human LBD brain manifests a similar pattern of aberrantly S-nitrosylated TCA enzymes, indicating the pathophysiological relevance of these results. Inhibition of mitochondrial energy metabolism in neurons is known to compromise dendritic length and synaptic integrity, eventually leading to neuronal cell death. Our evidence indicates that aberrant S-nitrosylation of TCA cycle enzymes contributes to this bioenergetic failure.
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