ATAD3A oligomerization causes neurodegeneration by coupling mitochondrial fragmentation and bioenergetics defects

被引:0
|
作者
Yuanyuan Zhao
Xiaoyan Sun
Di Hu
Domenick A. Prosdocimo
Charles Hoppel
Mukesh K. Jain
Rajesh Ramachandran
Xin Qi
机构
[1] Case Western Reserve University School of Medicine,Department of Physiology and Biophysics
[2] Case Western Reserve University School of Medicine,Case Cardiovascular Research Institute and Harrington Heart and Vascular Institute
[3] University Hospitals Case Medical Center,Department of Medicine
[4] Case Western Reserve University School of Medicine,Center for Mitochondrial Disease
[5] Case Western Reserve University School of Medicine,Department of Pharmacology
[6] Case Western Reserve University School of Medicine,undefined
来源
关键词
D O I
暂无
中图分类号
学科分类号
摘要
Mitochondrial fragmentation and bioenergetic failure manifest in Huntington’s disease (HD), a fatal neurodegenerative disease. The factors that couple mitochondrial fusion/fission with bioenergetics and their impacts on neurodegeneration however remain poorly understood. Our proteomic analysis identifies mitochondrial protein ATAD3A as an interactor of mitochondrial fission GTPase, Drp1, in HD. Here we show that, in HD, ATAD3A dimerization due to deacetylation at K135 residue is required for Drp1-mediated mitochondrial fragmentation. Disturbance of ATAD3A steady state impairs mtDNA maintenance by disrupting TFAM/mtDNA binding. Blocking Drp1/ATAD3A interaction with a peptide, DA1, abolishes ATAD3A oligomerization, suppresses mitochondrial fragmentation and mtDNA lesion, and reduces bioenergetic deficits and cell death in HD mouse- and patient-derived cells. DA1 treatment reduces behavioral and neuropathological phenotypes in HD transgenic mice. Our findings demonstrate that ATAD3A plays a key role in neurodegeneration by linking Drp1-induced mitochondrial fragmentation to defective mtDNA maintenance, suggesting that DA1 might be useful for developing HD therapeutics.
引用
收藏
相关论文
共 40 条
  • [31] Impaired Cellular Bioenergetics Causes Mitochondrial Calcium Handling Defects in MT-ND5 Mutant Cybrids
    McKenzie, Matthew
    Duchen, Michael R.
    PLOS ONE, 2016, 11 (04):
  • [32] MicroRNA-101-3p Suppresses mTOR and Causes Mitochondrial Fragmentation and Cell Degeneration in COPD
    Fang, Lei
    Wang, Xinggang
    Zhang, Ming
    Khan, Petra
    Tamm, Michael
    Roth, Michael
    CANADIAN RESPIRATORY JOURNAL, 2022, 2022
  • [33] Nitric oxide synthase-3 overexpression causes apoptosis and impairs neuronal mitochondrial function: Relevance to Alzheimer's-type neurodegeneration
    de la Monte, SM
    Chiche, JD
    von dem Bussche, A
    Sanyal, S
    Lahousse, SA
    Janssens, SP
    Bloch, KD
    LABORATORY INVESTIGATION, 2003, 83 (02) : 287 - 298
  • [34] Respiratory dysfunction by AFG3L2 deficiency causes decreased mitochondrial calcium uptake via organellar network fragmentation
    Maltecca, Francesca
    De Stefani, Diego
    Cassina, Laura
    Consolato, Francesco
    Wasilewski, Michal
    Scorrano, Luca
    Rizzuto, Rosario
    Casari, Giorgio
    HUMAN MOLECULAR GENETICS, 2012, 21 (17) : 3858 - 3870
  • [35] Hypertonic shock inhibits growth factor receptor signaling, induces caspase-3 activation, and causes reversible fragmentation of the mitochondrial network
    Copp, J
    Wiley, S
    Ward, MW
    van der Geer, P
    AMERICAN JOURNAL OF PHYSIOLOGY-CELL PHYSIOLOGY, 2005, 288 (02): : C403 - C415
  • [36] Nitric oxide synthase-3 over-expression causes apoptosis and impairs neuronal mitochondrial function: Relevance to Alzheimer type neurodegeneration.
    de la Monte, SM
    Chiche, JD
    Janssens, SP
    Bloch, KD
    JOURNAL OF NEUROPATHOLOGY AND EXPERIMENTAL NEUROLOGY, 2002, 61 (05): : 447 - 447
  • [37] Loss of the m-AAA protease subunit AFG3L2 causes mitochondrial transport defects and tau hyperphosphorylation
    Kondadi, Arun Kumar
    Wang, Shuaiyu
    Montagner, Sara
    Kladt, Nikolay
    Korwitz, Anne
    Martinelli, Paola
    Herholz, David
    Baker, Michael J.
    Schauss, Astrid C.
    Langer, Thomas
    Rugarli, Elena I.
    EMBO JOURNAL, 2014, 33 (09): : 1011 - 1026
  • [38] Loss of β-catenin via activated GSK3β causes diabetic retinal neurodegeneration by instigating a vicious cycle of oxidative stress-driven mitochondrial impairment
    Shu, Xing-Sheng
    Zhu, Huazhang
    Huang, Xiaoyan
    Yang, Yangfan
    Wang, Dandan
    Zhang, Yiling
    Zhang, Weizhen
    Ying, Ying
    AGING-US, 2020, 12 (13): : 13437 - 13462
  • [39] Complex II inhibition by 3-NP causes mitochondrial fragmentation and neuronal cell death via an NMDA- and ROS-dependent pathway
    Liot, G.
    Bossy, B.
    Lubitz, S.
    Kushnareva, Y.
    Sejbuk, N.
    Bossy-Wetzel, E.
    CELL DEATH AND DIFFERENTIATION, 2009, 16 (06): : 899 - 909
  • [40] Complex II inhibition by 3-NP causes mitochondrial fragmentation and neuronal cell death via an NMDA- and ROS-dependent pathway
    G Liot
    B Bossy
    S Lubitz
    Y Kushnareva
    N Sejbuk
    E Bossy-Wetzel
    Cell Death & Differentiation, 2009, 16 : 899 - 909