ACO2 deficiency increases vulnerability to Parkinson's disease via dysregulating mitochondrial function and histone acetylation-mediated transcription of autophagy genes
机构:[1]Department of Neurology & Neurobiology, Xuanwu Hospital of Capital Medical University, National Clinical Research Center for Geriatric Diseases, Beijing100053, China神经科系统神经内科首都医科大学宣武医院[2]Department of Neurology, The First Affiliated Hospital of Gannan Medical University, Ganzhou 341000, China[3]Department ofBiochemistry and Molecular Biology, Capital Medical University. School of Basic Medicine, Beijing 100069, China[4]Department of Stroke Center, CentralHospital Affiliated to Shandong First Medical University, Jinan 250000, China
National Natural Science Foundation (NNSF) of China
to C.W. (No. 82371259; No. 82171412; No. 81771212), and the National Key R&D
Program of China to L.L. (2020YFC2008004).
第一作者机构:[1]Department of Neurology & Neurobiology, Xuanwu Hospital of Capital Medical University, National Clinical Research Center for Geriatric Diseases, Beijing100053, China
通讯作者:
推荐引用方式(GB/T 7714):
Zhu Junge,Xu Fanxi,Lai Hong,et al.ACO2 deficiency increases vulnerability to Parkinson's disease via dysregulating mitochondrial function and histone acetylation-mediated transcription of autophagy genes[J].COMMUNICATIONS BIOLOGY.2023,6(1):1201.doi:10.1038/s42003-023-05570-y.
APA:
Zhu Junge,Xu Fanxi,Lai Hong,Yuan Huiyao,Li Xu-Ying...&Wang Chaodong.(2023).ACO2 deficiency increases vulnerability to Parkinson's disease via dysregulating mitochondrial function and histone acetylation-mediated transcription of autophagy genes.COMMUNICATIONS BIOLOGY,6,(1)
MLA:
Zhu Junge,et al."ACO2 deficiency increases vulnerability to Parkinson's disease via dysregulating mitochondrial function and histone acetylation-mediated transcription of autophagy genes".COMMUNICATIONS BIOLOGY 6..1(2023):1201