Reduced C9orf72 expression exacerbates polyGR toxicity in patient iPSC-derived motor neurons and a Type I protein arginine methyltransferase inhibitor reduces that toxicity

被引:7
作者
Dane, Therese L. [1 ]
Gill, Anna L. [1 ]
Vieira, Fernando G. [1 ]
Denton, Kyle R. [1 ]
机构
[1] ALS Therapy Dev Inst, Watertown, MA 02472 USA
关键词
amyotrophic lateral sclerosis (ALS); frontotemporal dementia (FTD); C9orf72; protein arginine methyltransferase (PRMT); asymmetric dimethylation; dipeptide repeat protein (DPR); poly-Glycine-Arginine (polyGR); hexanucleotide repeat expansion (HRE); AMYOTROPHIC-LATERAL-SCLEROSIS; HEXANUCLEOTIDE REPEAT; DISEASE DURATION; RAN TRANSLATION; METHYLATION; EXPANSION; ALS; DYNAMICS; STRESS; SIZE;
D O I
10.3389/fncel.2023.1134090
中图分类号
Q189 [神经科学];
学科分类号
071006 ;
摘要
IntroductionIntronic repeat expansions in the C9orf72 gene are the most frequent known single genetic causes of amyotrophic lateral sclerosis (ALS) and frontotemporal dementia (FTD). These repeat expansions are believed to result in both loss-of-function and toxic gain-of-function. Gain-of-function results in the production of toxic arginine-rich dipeptide repeat proteins (DPRs), namely polyGR and polyPR. Small-molecule inhibition of Type I protein arginine methyltransferases (PRMTs) has been shown to protect against toxicity resulting from polyGR and polyPR challenge in NSC-34 cells and primary mouse-derived spinal neurons, but the effect in human motor neurons (MNs) has not yet been explored. MethodsTo study this, we generated a panel of C9orf72 homozygous and hemizygous knockout iPSCs to examine the contribution of C9orf72 loss-of-function toward disease pathogenesis. We differentiated these iPSCs into spinal motor neurons (sMNs). ResultsWe found that reduced levels of C9orf72 exacerbate polyGR15 toxicity in a dose-dependent manner. Type I PRMT inhibition was able to partially rescue polyGR15 toxicity in both wild-type and C9orf72-expanded sMNs. DiscussionThis study explores the interplay of loss-of-function and gain-of-function toxicity in C9orf72 ALS. It also implicates type I PRMT inhibitors as a possible modulator of polyGR toxicity.
引用
收藏
页数:14
相关论文
共 77 条
  • [1] C9orf72 binds SMCR8, localizes to lysosomes, and regulates mTORC1 signaling
    Amick, Joseph
    Roczniak-Ferguson, Agnes
    Ferguson, Shawn M.
    [J]. MOLECULAR BIOLOGY OF THE CELL, 2016, 27 (20) : 3040 - 3051
  • [2] C9orf72 and RAB7L1 regulate vesicle trafficking in amyotrophic lateral sclerosis and frontotemporal dementia
    Aoki, Yoshitsugu
    Manzano, Raquel
    Lee, Yi
    Dafinca, Ruxandra
    Aoki, Misako
    Douglas, Andrew G. L.
    Varela, Miguel A.
    Sathyaprakash, Chaitra
    Scaber, Jakub
    Barbagallo, Paola
    Vader, Pieter
    Mager, Imre
    Ezzat, Kariem
    Turner, Martin R.
    Ito, Naoki
    Gasco, Samanta
    Ohbayashi, Norihiko
    El Andaloussi, Samir
    Takeda, Shin'ichi
    Fukuda, Mitsunori
    Talbot, Kevin
    Wood, Matthew J. A.
    [J]. BRAIN, 2017, 140 : 887 - 897
  • [3] Unconventional Translation of C9ORF72 GGGGCC Expansion Generates Insoluble Polypeptides Specific to c9FTD/ALS
    Ash, Peter E. A.
    Bieniek, Kevin F.
    Gendron, Tania F.
    Caulfield, Thomas
    Lin, Wen-Lang
    DeJesus-Hernandez, Mariely
    van Blitterswijk, Marka M.
    Jansen-West, Karen
    Paul, Joseph W., III
    Rademakers, Rosa
    Boylan, Kevin B.
    Dickson, Dennis W.
    Petrucelli, Leonard
    [J]. NEURON, 2013, 77 (04) : 639 - 646
  • [4] C9orf72-mediated ALS and FTD: multiple pathways to disease
    Balendra, Rubika
    Isaacs, Adrian M.
    [J]. NATURE REVIEWS NEUROLOGY, 2018, 14 (09) : 544 - 558
  • [5] CD28 costimulatory signal induces protein arginine methylation in T cells
    Blanchet, F
    Cardona, A
    Letimier, FA
    Hershfield, MS
    Acuto, O
    [J]. JOURNAL OF EXPERIMENTAL MEDICINE, 2005, 202 (03) : 371 - 377
  • [6] Reduced autophagy upon C9ORF72 loss synergizes with dipeptide repeat protein toxicity in G4C2 repeat expansion disorders
    Boivin, Manon
    Pfister, Veronique
    Gaucherot, Angeline
    Ruffenach, Frank
    Negroni, Luc
    Sellier, Chantal
    Charlet-Berguerand, Nicolas
    [J]. EMBO JOURNAL, 2020, 39 (04)
  • [7] C9orf72loss-of-function: a trivial, stand-alone or additive mechanism in C9 ALS/FTD?
    Braems, Elke
    Swinnen, Bart
    Van den Bosch, Ludo
    [J]. ACTA NEUROPATHOLOGICA, 2020, 140 (05) : 625 - 643
  • [8] A blood-brain penetrant RNA-targeted small molecule triggers elimination of r(G4C2)exp in c9ALS/FTD via the nuclear RNA exosome
    Bush, Jessica A.
    Meyer, Samantha M.
    Fuerst, Rita
    Tong, Yuquan
    Li, Yue
    Benhamou, Raphael, I
    Aikawa, Haruo
    Zanon, Patrick R. A.
    Gibaut, Quentin M. R.
    Angelbello, Alicia J.
    Gendron, Tania F.
    Zhang, Yong-Jie
    Petrucelli, Leonard
    Jensen, Torben Heick
    Childs-Disney, Jessica L.
    Disney, Matthew D.
    [J]. PROCEEDINGS OF THE NATIONAL ACADEMY OF SCIENCES OF THE UNITED STATES OF AMERICA, 2022, 119 (48)
  • [9] C9ORF72 GGGGCC repeat-associated non-AUG translation is upregulated by stress through eIF2α phosphorylation
    Cheng, Weiwei
    Wang, Shaopeng
    Mestre, Alexander A.
    Fu, Chenglai
    Makarem, Andres
    Xian, Fengfan
    Hayes, Lindsey R.
    Lopez-Gonzalez, Rodrigo
    Drenner, Kevin
    Jiang, Jie
    Cleveland, Don W.
    Sun, Shuying
    [J]. NATURE COMMUNICATIONS, 2018, 9
  • [10] A complex of C9ORF72 and p62 uses arginine methylation to eliminate stress granules by autophagy
    Chitiprolu, Maneka
    Jagow, Chantal
    Tremblay, Veronique
    Bondy-Chorney, Emma
    Paris, Genevieve
    Savard, Alexandre
    Palidwor, Gareth
    Barry, Francesca A.
    Zinman, Lorne
    Keith, Julia
    Rogaeva, Ekaterina
    Robertson, Janice
    Lavallee-Adam, Mathieu
    Woulfe, John
    Couture, Jean-Francois
    Cote, Jocelyn
    Gibbings, Derrick
    [J]. NATURE COMMUNICATIONS, 2018, 9