首站-论文投稿智能助手
典型文献
Phosphorylated tau as a toxic agent in synaptic mitochondria: implications in aging and Alzheimer 's disease
文献摘要:
During normal aging, there is a decline in all physiological functions in the organism. One of the most affected organs is the brain, where neurons lose their proper synaptic function leading to cognitive impairment. Aging is one of the main risk factors for the development of neurodegenerative diseases, such as Alzheimer's disease. One of the main responsible factors for synaptic dysfunction in aging and neurodegenerative diseases is the accumulation of abnormal proteins forming aggregates. The most studied brain aggregates are the senile plaques, formed by Aβ peptide; however, the aggregates formed by phosphorylated tau protein have gained relevance in the last years by their toxicity. It is reported that neurons undergo severe mitochondrial dysfunction with age, with a decrease in adenosine 5′-triphosphate production, loss of the mitochondrial membrane potential, redox imbalance, impaired mitophagy, and loss of calcium buffer capacity. Interestingly, abnormal tau protein interacts with several mitochondrial proteins, suggesting that it could induce mitochondrial dysfunction. Nevertheless, whether tau-mediated mitochondrial dysfunction occurs indirectly or directly is still unknown. A recent study of our laboratory shows that phosphorylated tau at Ser396/404 (known as PHF-1), an epitope commonly related to pathology, accumulates inside mitochondria during normal aging. This accumulation occurs preferentially in synaptic mitochondria, which suggests that it may contribute to the synaptic failure and cognitive impairment seen in aged individuals. Here, we review the main tau modifications promoting mitochondrial dysfunction, and the possible mechanism involved. Also, we discuss the evidence that supports the possibility that phosphorylated tau accumulation in synaptic mitochondria promotes synaptic and cognitive impairment in aging. Finally, we show evidence and argue about the presence of phosphorylated tau PHF-1 inside mitochondria in Alzheimer's disease, which could be considered as an early event in the neurodegenerative process. Thus, phosphorylated tau PHF-1 inside the mitochondria could be considered such a potential therapeutic target to prevent or attenuate age-related cognitive impairment.
文献关键词:
作者姓名:
Angie K.Torres;Bastián I.Rivera;Catalina M.Polanco;Claudia Jara;Cheril Tapia-Rojas
作者机构:
Laboratory of Neurobiology of Aging,Centro de Biología Celular y Biomedicina(CEBICEM),Facultad de Medicina y Ciencia,Universidad San Sebastián,Sede Los Leones,Santiago,Chile
引用格式:
[1]Angie K.Torres;Bastián I.Rivera;Catalina M.Polanco;Claudia Jara;Cheril Tapia-Rojas-.Phosphorylated tau as a toxic agent in synaptic mitochondria: implications in aging and Alzheimer 's disease)[J].中国神经再生研究(英文版),2022(08):1645-1651
A类:
B类:
Phosphorylated,tau,agent,synaptic,implications,aging,Alzheimer,During,there,decline,physiological,functions,organism,One,most,affected,organs,brain,where,neurons,lose,their,proper,leading,cognitive,impairment,Aging,one,main,risk,factors,development,neurodegenerative,diseases,such,responsible,dysfunction,accumulation,abnormal,proteins,forming,aggregates,studied,are,senile,plaques,formed,by,peptide,however,phosphorylated,have,gained,relevance,last,years,toxicity,It,reported,that,undergo,severe,mitochondrial,decrease,adenosine,triphosphate,production,loss,membrane,potential,redox,imbalance,impaired,mitophagy,calcium,buffer,capacity,Interestingly,interacts,several,suggesting,could,induce,Nevertheless,whether,mediated,occurs,indirectly,still,unknown,recent,study,our,laboratory,shows,Ser396,PHF,epitope,commonly,related,pathology,accumulates,inside,during,This,preferentially,which,suggests,may,contribute,failure,seen,aged,individuals,Here,review,modifications,promoting,possible,mechanism,involved,Also,discuss,evidence,supports,possibility,promotes,Finally,argue,about,presence,be,considered,early,process,Thus,therapeutic,target,prevent,attenuate
AB值:
0.501215
相似文献
Common mtDNA variations at C5178a and A249d/T6392C/G10310A decrease the risk of severe COVID?19 in a Han Chinese population from Central China
Yi Wu;Xian‑Hui Wang;Xi‑Hua Li;Li‑Yuan Song;Shi‑Long Yu;Zhi‑Cheng Fang;Yu‑Quan Liu;Le‑Yong Yuan;Chun‑Yan Peng;Shen‑Yi Zhang;Wang Cheng;Hong‑Chao Ma;Li‑Feng Wang;Jun‑Ming Tang;Yun‑Fu Wang;Fu‑Yun Ji-Department of Medical Biology,School of Basic Medical Science,Hubei University of Medicine,Shiyan 442000,Hubei,China;Institute of Biomedical Research,Hubei University of Medicine,Shiyan 442000,Hubei,China;Institute of Human Respiratory Disease,Xinqiao Hospital,The Army Medical University(Third Military Medical University),400037 Chongqing,China;Department of Emergency Medicine,Taihe Hospital,Hubei University of Medicine,Shiyan 442000,Hubei,China;Department of Geriatric Medicine,Taihe Hospital,Hubei University of Medicine,Shiyan 442000,Hubei,China;Department of Immunology,School of Basic Medical Sciences,Hubei University of Medicine,Shiyan 442000,Hubei,China;Department of Laboratory Medicine,Taihe Hospital,Hubei University of Medicine,Shiyan 442000,Hubei,China;Hubei Key Laboratory of Embryonic Stem Cell Research,School of Basic Medical Science,Hubei University of Medicine,Shiyan 442000,Hubei,China;Department of Neurology,Taihe Hospital,Hubei University of Medicine,Shiyan 442000,Hubei,China
CX3C-chemokine receptor 1 modulates cognitive dysfunction induced by sleep deprivation
Xin Jiawei;Wang Chao;Cheng Xiaojuan;Xie Changfu;Zhang Qiuyang;Ke Yilang;Huang Xuanyu;Chen Xiaochun;Pan Xiaodong-Department of Neurology, Fujian Institute of Geriatrics, Fujian Medical University Union Hospital, Fuzhou, Fujian 350001, China;Fujian Key Laboratory of Molecular Neurology, Fujian Medical University, Fuzhou, Fujian 350001, China;Key Laboratory of Brain Aging and Neurodegenerative Diseases, Fujian Medical University, Fuzhou, Fujian 350001, China;School and Hospital of Stomatology, Fujian Medical University, Fuzhou, Fujian 350001, China;Department of Geriatrics, Fujian Institute of Geriatrics, Fujian Medical University Union Hospital, Fuzhou, Fujian 350001, China;Fujian Key Laboratory of Vascular Aging, Fujian Medical University, Fuzhou, Fujian 350001, China
CHCHD2 maintains mitochondrial contact site and cristae organizing system stability and protects against mitochondrial dysfunction in an experimental model of Parkinson’s disease
Lu Lin;Mao Hengxu;Zhou Miaomiao;Lin Yuwan;Dai Wei;Qiu Jiewen;Xiao Yousheng;Mo Mingshu;Zhu Xiaoqin;Wu Zhuohua;Pei Zhong;Guo Wenyuan;Xu Pingyi;Chen Xiang-Department of Neurology, The First Affiliated Hospital of Guangzhou Medical University, Guangzhou, Guangdong 510120, China;Department of Neurology, The First Affiliated Hospital of Guangxi Medical University, Nanning, Guangxi 530021, China;School of Basic Medical Sciences, Guangzhou Medical University, Guangzhou, Guangdong 511436, China;Department of Neurology, National Key Clinical Department and Key Discipline of Neurology, The First Affiliated Hospital of Sun Yat-Sen University, Guangzhou, Guangdong 510080, China
Alzheimer's disease:current status and perspective
Wenying Liu;Serge Gauthier;Jianping Jia-Innovation Center for Neurological Disorders and Department of Neurology,Xuanwu Hospital,Capital Medical University,National Clinical Research Center for Geriatric Diseases,Beijing 100053,China;Departments of Neurology and Neurosurgery,and Department of Psychiatry,McGill Centre for Studies in Aging,McGill University,Montreal H4H1R3,Canada;Beijing Key Laboratory of Geriatric Cognitive Disorders,Beijing 100053,China;Clinical Center for Neurodegenerative Disease and Memory Impairment,Capital Medical University,Beijing 100053,China;Center of Alzheimer's Disease,Beijing Institute of Brain Disorders,Collaborative Innovation Center for Brain Disorders,Capital Medical University,Beijing 100053,China;Key Laboratory of Neurodegenerative Diseases,Ministry of Education,Beijing 100053,China
An App knock-in rat model for Alzheimer's disease exhibiting Aβ and tau pathologies,neuronal death and cognitive impairments
Keliang Pang;Richeng Jiang;Wei Zhang;Zhengyi Yang;Lin-Lin Li;Makoto Shimozawa;Simone Tambaro;Johanna Mayer;Baogui Zhang;Man Li;Jiesi Wang;Hang Liu;Ailing Yang;Xi Chen;Jiazheng Liu;Bengt Winblad;Hua Han;Tianzi Jiang;Weiwen Wang;Per Nilsson;Wei Guo;Bai Lu-School of Pharmaceutical Sciences,IDG/McGovern Institute for Brain Research,Tsinghua University-Peking University Joint Center for Life Sciences,Tsinghua University,Beijing,China;R&D Center for the Diagnosis and Treatment of Major Brain Diseases,Research Institute of Tsinghua University in Shenzhen,Shenzhen,Guangdong,China;Beijing Tiantan Hospital,Advanced Innovation Center for Human Brain Protection,Capital Medical University,Beijing,China;Department of Neurobiology,Care Sciences and Society,Division of Neurogeriatrics,Center for Alzheimer Research,Karolinska Institutet,Stockholm,Sweden;Department of Otorhinolaryngology Head and Neck Surgery,The First Hospital of Jilin University,Changchun,China;CAS Key Laboratory of Mental Health,Institute of Psychology,Chinese Academy of Sciences,and Department of Psychology,University of Chinese Academy of Sciences,Beijing,China;Brainnetome Center,Institute of Automation,Chinese Academy of Sciences,Beijing,China;Research Center for Brain-inspired Intelligence,National Laboratory of Pattern Recognition,Institute of Automation,School of Future Technology,University of CAS,and CAS Center for Excellence in Brain Science and Intelligence Technology,Chinese Academy of Sciences,Shanghai,China;Theme Aging,Karolinska University Hospital,Huddinge,Sweden
Structural basis of the activation of metabotropic glutamate receptor 3
Wei Fang;Fan Yang;Chanjuan Xu;Shenglong Ling;Li Lin;Yingxin Zhou;Wenjing Sun;Xiaomei Wang;Peng Liu;Philippe Rondard;Pan Shi;Jean-Philippe Pin;Changlin Tian;Jianfeng Liu-The First Affiliated Hospital of USTC,School of Life Sciences,Division of Life Sciences and Medicine,Joint Center for Biological Analytical Chemistry,Anhui Engineering Laboratory of Peptide Drug,Anhui Laboratory of Advanced Photonic Science and Technology,University of Science and Technology of China,Hefei,Anhui,China;Key Laboratory of Molecular Biophysics of MOE,International Research Center for Sensory Biology and Technology of MOST,College of Life Science and Technology,Huazhong University of Science and Technology(HUST),Wuhan,Hubei,China;Bioland Laboratory,Guangzhou Regenerative Medicine and Health Guangdong Laboratory,Guangzhou,Guangdong,China;Institut de Génomique Fonctionnelle(IGF),Université de Montpellier,CNRS,INSERM,Montpellier,France
Corynoxine B derivative CB6 prevents Parkinsonian toxicity in mice by inducing PIK3C3 complex-dependent autophagy
Zhou Zhu;Liang-feng Liu;Cheng-fu Su;Jia Liu;Benjamin Chun-Kit Tong;Ashok lyaswamy;Senthilkumar Krishnamoorthi;Sravan Gopalkrishnashetty Sreenivasmurthy;Xin-jie Guan;Yu-xuan Kan;Wen-jian Xie;Chen-liang Zhao;King-ho Cheung;Jia-hong Lu;Jie-qiong Tan;Hong-jie Zhang;Ju-xian Song;Min Li-Mr.&Mrs.Ko Chi-Ming Centre for Parkinson's Disease Research,School of Chinese Medicine,Hong Kong Baptist University,Hong Kong,SAR,China;School of Chinese Medicine,Hong Kong Baptist University,Hong Kong,SAR,China;institute for Research and Continuing Education,Hong Kong Baptist University,Shenzhen 518057,China;Limin Pharmaceutical Factory,Livzon Group Limited,Shaoguan 512028,China;State Key Laboratory of Quality Research in Chinese Medicine,Institute of Chinese Medical Sciences,University of Macau,Macau,SAR,China;Center for Medical Genetics and Hunan Key Laboratory of Animal Model for Human Diseases,School of Life Sciences,Central South University,Changsha 410078,China;Medical College of Acupuncture-Moxibustion and Rehabilitation,Guangzhou University of Chinese Medicine,Guangzhou 510006,China
机标中图分类号,由域田数据科技根据网络公开资料自动分析生成,仅供学习研究参考。