Identifying amyloid-related diseases by mapping mutations in low-complexity protein domains to pathologies

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作者
Kevin A. Murray
Michael P. Hughes
Carolyn J. Hu
Michael R. Sawaya
Lukasz Salwinski
Hope Pan
Samuel W. French
Paul M. Seidler
David S. Eisenberg
机构
[1] UCLA-DOE Institute,Departments of Chemistry and Biochemistry and Biological Chemistry
[2] Molecular Biology Institute,Department of Pathology & Laboratory Medicine
[3] and Howard Hughes Medical Institute,Department of Pharmacology and Pharmaceutical Science
[4] UCLA,undefined
[5] David Geffen School of Medicine at UCLA,undefined
[6] University of Southern California,undefined
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摘要
Proteins including FUS, hnRNPA2, and TDP-43 reversibly aggregate into amyloid-like fibrils through interactions of their low-complexity domains (LCDs). Mutations in LCDs can promote irreversible amyloid aggregation and disease. We introduce a computational approach to identify mutations in LCDs of disease-associated proteins predicted to increase propensity for amyloid aggregation. We identify several disease-related mutations in the intermediate filament protein keratin-8 (KRT8). Atomic structures of wild-type and mutant KRT8 segments confirm the transition to a pleated strand capable of amyloid formation. Biochemical analysis reveals KRT8 forms amyloid aggregates, and the identified mutations promote aggregation. Aggregated KRT8 is found in Mallory–Denk bodies, observed in hepatocytes of livers with alcoholic steatohepatitis (ASH). We demonstrate that ethanol promotes KRT8 aggregation, and KRT8 amyloids co-crystallize with alcohol. Lastly, KRT8 aggregation can be seeded by liver extract from people with ASH, consistent with the amyloid nature of KRT8 aggregates and the classification of ASH as an amyloid-related condition.
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页码:529 / 536
页数:7
相关论文
共 17 条
  • [1] Identifying amyloid-related diseases by mapping mutations in low-complexity protein domains to pathologies
    Murray, Kevin A.
    Hughes, Michael P.
    Hu, Carolyn J.
    Sawaya, Michael R.
    Salwinski, Lukasz
    Pan, Hope
    French, Samuel W.
    Seidler, Paul M.
    Eisenberg, David S.
    [J]. NATURE STRUCTURAL & MOLECULAR BIOLOGY, 2022, 29 (06) : 529 - +
  • [2] Aggregation of low-complexity protein domains during replicative aging
    Krzyzanowski, Marek K.
    deMello, Andrew J.
    Barral, Yves
    [J]. YEAST, 2013, 30 : 118 - 118
  • [3] A Novel algorithm for identifying low-complexity regions in a protein sequence
    Li, Xuehui
    Kahveci, Tamer
    [J]. BIOINFORMATICS, 2006, 22 (24) : 2980 - 2987
  • [4] ISOLATION AND CHARACTERIZATION OF AMYLOID-RELATED SERUM-PROTEIN SAA AS A LOW-MOLECULAR WEIGHT PROTEIN
    ANDERS, RF
    NATVIG, JB
    MICHAELSEN, TE
    HUSBY, G
    [J]. SCANDINAVIAN JOURNAL OF IMMUNOLOGY, 1975, 4 (04) : 397 - 401
  • [5] Atypical structural tendencies among low-complexity domains in the protein data bank proteome
    Cascarina, Sean M.
    Elder, Mikaela R.
    Ross, Eric D.
    [J]. PLOS COMPUTATIONAL BIOLOGY, 2020, 16 (01)
  • [6] RNA controls a switch-like liquid phase transition of low-complexity protein domains
    Banerjee, Priya
    [J]. ABSTRACTS OF PAPERS OF THE AMERICAN CHEMICAL SOCIETY, 2019, 258
  • [7] Mutations linked to neurological disease enhance self-association of low-complexity protein sequences
    Zhou, Xiaoming
    Sumrow, Lily
    Tashiro, Kyuto
    Sutherland, Lillian
    Liu, Daifei
    Qin, Tian
    Kato, Masato
    Liszczak, Glen
    McKnight, Steven L.
    [J]. SCIENCE, 2022, 377 (6601) : 46 - +
  • [8] Low complexity domains of the nucleocapsid protein of SARS-CoV-2 form amyloid fibrils
    Einav Tayeb-Fligelman
    Jeannette T. Bowler
    Christen E. Tai
    Michael R. Sawaya
    Yi Xiao Jiang
    Gustavo Garcia
    Sarah L. Griner
    Xinyi Cheng
    Lukasz Salwinski
    Liisa Lutter
    Paul M. Seidler
    Jiahui Lu
    Gregory M. Rosenberg
    Ke Hou
    Romany Abskharon
    Hope Pan
    Chih-Te Zee
    David R. Boyer
    Yan Li
    Daniel H. Anderson
    Kevin A. Murray
    Genesis Falcon
    Duilio Cascio
    Lorena Saelices
    Robert Damoiseaux
    Vaithilingaraja Arumugaswami
    Feng Guo
    David S. Eisenberg
    [J]. Nature Communications, 14
  • [9] Low complexity domains of the nucleocapsid protein of SARS-CoV-2 form amyloid fibrils
    Tayeb-Fligelman, Einav
    Bowler, Jeannette T.
    Tai, Christen E. E.
    Sawaya, Michael R.
    Jiang, Yi Xiao
    Garcia, Gustavo
    Griner, Sarah L.
    Cheng, Xinyi
    Salwinski, Lukasz
    Lutter, Liisa
    Seidler, Paul M.
    Lu, Jiahui
    Rosenberg, Gregory M.
    Hou, Ke
    Abskharon, Romany
    Pan, Hope
    Zee, Chih-Te
    Boyer, David R.
    Li, Yan
    Anderson, Daniel H.
    Murray, Kevin A.
    Falcon, Genesis
    Cascio, Duilio
    Saelices, Lorena
    Damoiseaux, Robert
    Arumugaswami, Vaithilingaraja
    Guo, Feng
    Eisenberg, David S.
    [J]. NATURE COMMUNICATIONS, 2023, 14 (01)
  • [10] Structure of FUS Protein Fibrils and Its Relevance to Self-Assembly and Phase Separation of Low-Complexity Domains
    Murray, Dylan T.
    Kato, Masato
    Lin, Yi
    Thurber, Kent R.
    Hung, Ivan
    McKnight, Steven L.
    Tycko, Robert
    [J]. CELL, 2017, 171 (03) : 615 - +