The human brain acetylome reveals that decreased acetylation of mitochondrial proteins associates with Alzheimer's disease

被引:12
|
作者
Sun, Lidan [1 ,2 ]
Bhawal, Ruchika [3 ]
Xu, Hui [1 ]
Chen, Huanlian [1 ]
Anderson, Elizabeth T. [3 ]
Haroutunian, Vahrum [4 ,5 ,6 ]
Cross, Abigail C. [1 ]
Zhang, Sheng [3 ]
Gibson, Gary E. [1 ]
机构
[1] Weill Cornell Med, Burke Neurol Inst, Brain & Mind Res Inst, 785 Mamaroneck Ave, White Plains, NY 10605 USA
[2] Jiaxing Univ, Coll Med, Integrated Med Res Ctr Neurol Rehabil, Jiaxing, Peoples R China
[3] Cornell Univ, Inst Biotechnol, Prote & Metab Facil, Ithaca, NY USA
[4] Icahn Sch Med Mt Sinai, Dept Psychiat, New York, NY 10029 USA
[5] James J Peters VA Med Ctr, Mental Illness Res Educ & Clin Ctr, Bronx, NY USA
[6] Icahn Sch Med Mt Sinai, Dept Neurosci, New York, NY 10029 USA
关键词
acetylation; Alzheimer; human brain; ketoglutarate dehydrogenase complex; pyruvate dehydrogenase complex; s disease; LYSINE ACETYLATION; COMPREHENSIVE ANALYSIS; SIRT3; DEHYDROGENASE; TAU; ROLES;
D O I
10.1111/jnc.15377
中图分类号
Q5 [生物化学]; Q7 [分子生物学];
学科分类号
071010 ; 081704 ;
摘要
Metabolic changes that correlate to cognitive changes are well-known in Alzheimer's disease (AD). Metabolism is often linked to functional changes in proteins by post-translational modifications. The importance of the regulation of transcription by acetylation is well documented. Advanced mass spectrometry reveals hundreds of acetylated proteins in multiple tissues, but the acetylome of human brain, its functional significance, and the changes with disease are unknown. Filling this gap is critical for understanding the pathophysiology and development of therapies. To fill this gap, we assessed the human brain acetylome in human brain and its changes with AD. More than 5% of the 4,442 proteins from the human brain global proteome were acetylated. Acetylated proteins were primarily found in the cytosol (148), mitochondria (100), nucleus (91), and plasma membrane (58). The comparison of the brain acetylome in controls to that of patients with AD revealed striking and selective differences in terms of its abundances of acetylated peptides/sites. Acetylation of 18 mitochondrial proteins decreased, while acetylation of two cytosolic proteins, tau and GFAP, increased. Our experiments demonstrate that acetylation at some specific lysine sites alters enzyme function. The results indicate that general activation of de-acetylases (i.e., sirtuins) is not an appropriate therapeutic approach for AD.
引用
收藏
页码:282 / 296
页数:15
相关论文
共 50 条
  • [21] Mitochondrial Neurodegenerative Diseases: Three Mitochondrial Ribosomal Proteins as Intermediate Stage in the Pathway That Associates Damaged Genes with Alzheimer's and Parkinson's
    Del Giudice, Luigi
    Pontieri, Paola
    Aletta, Mariarosaria
    Calcagnile, Matteo
    BIOLOGY-BASEL, 2023, 12 (07):
  • [22] Pathologic subtyping of Alzheimer's disease brain tissue reveals disease heterogeneity
    Lam, T.
    Leskinen, S.
    Ciener, B.
    Sivakumar, S.
    Xiao, H.
    Flaherty, D.
    Ropri, A.
    Vonsattel, J. P.
    Teich, A.
    BRAIN PATHOLOGY, 2023, 33
  • [23] Altered succinylation of mitochondrial proteins, APP and tau in Alzheimer’s disease
    Yun Yang
    Victor Tapias
    Diana Acosta
    Hui Xu
    Huanlian Chen
    Ruchika Bhawal
    Elizabeth T. Anderson
    Elena Ivanova
    Hening Lin
    Botir T. Sagdullaev
    Jianer Chen
    William L. Klein
    Kirsten L. Viola
    Sam Gandy
    Vahram Haroutunian
    M. Flint Beal
    David Eliezer
    Sheng Zhang
    Gary E. Gibson
    Nature Communications, 13
  • [24] Altered succinylation of mitochondrial proteins, APP and tau in Alzheimer's disease
    Yang, Yun
    Tapias, Victor
    Acosta, Diana
    Xu, Hui
    Chen, Huanlian
    Bhawal, Ruchika
    Anderson, Elizabeth T.
    Ivanova, Elena
    Lin, Hening
    Sagdullaev, Botir T.
    Chen, Jianer
    Klein, William L.
    Viola, Kirsten L.
    Gandy, Sam
    Haroutunian, Vahram
    Beal, M. Flint
    Eliezer, David
    Zhang, Sheng
    Gibson, Gary E.
    NATURE COMMUNICATIONS, 2022, 13 (01)
  • [25] Exploring the role of mitochondrial proteins as molecular target in Alzheimer's disease
    Chadha, Swati
    Behl, Tapan
    Sehgal, Aayush
    Kumar, Arun
    Bungau, Simona
    MITOCHONDRION, 2021, 56 : 62 - 72
  • [26] Proteomic identification of nitrated proteins in Alzheimer's disease brain
    Castegna, A
    Thongboonkerd, V
    Klein, JB
    Lynn, B
    Markesbery, WR
    Butterfield, DA
    JOURNAL OF NEUROCHEMISTRY, 2003, 85 (06) : 1394 - 1401
  • [27] Accumulation of amyloid precursor protein in the mitochondrial import channels of human Alzheimer's disease brain is associated with mitochondrial dysfunction
    Devi, Latha
    Prabhu, Badanavalu M.
    Galati, Domenico F.
    Avadhani, Narayan G.
    Anandatheerthavarada, Hindupur K.
    JOURNAL OF NEUROSCIENCE, 2006, 26 (35): : 9057 - 9068
  • [28] Decreased synaptic proteins in neuronal exosomes of frontotemporal dementia and Alzheimer's disease
    Goetzl, Edward J.
    Kapogiannis, Dimitrios
    Schwartz, Janice B.
    Lobach, Iryna V.
    Goetzl, Laura
    Abner, Erin L.
    Jicha, Gregory A.
    Karydas, Anna M.
    Boxer, Adam
    Miller, Bruce L.
    FASEB JOURNAL, 2016, 30 (12): : 4141 - 4148
  • [29] Effects of postmortem interval, age, and Alzheimer's disease on G-proteins in human brain
    Li, XH
    Greenwood, AF
    Powers, R
    Jope, RS
    NEUROBIOLOGY OF AGING, 1996, 17 (01) : 115 - 122
  • [30] Integrated transcriptomics reveals the brain and blood biomarkers in Alzheimer's disease
    Yu, Haitao
    Wang, Fangzhou
    Wu, Jia-jun
    Gong, Juan
    Bi, Shuguang
    Mao, Yumin
    Jia, Dongdong
    Chai, Gao-shang
    CNS NEUROSCIENCE & THERAPEUTICS, 2023, 29 (12) : 3943 - 3951