iPSC-derived neurons from GBA1-associated Parkinson’s disease patients show autophagic defects and impaired calcium homeostasis

被引:0
|
作者
David C. Schöndorf
Massimo Aureli
Fiona E. McAllister
Christopher J. Hindley
Florian Mayer
Benjamin Schmid
S. Pablo Sardi
Manuela Valsecchi
Susanna Hoffmann
Lukas Kristoffer Schwarz
Ulrike Hedrich
Daniela Berg
Lamya S. Shihabuddin
Jing Hu
Jan Pruszak
Steven P. Gygi
Sandro Sonnino
Thomas Gasser
Michela Deleidi
机构
[1] German Center for Neurodegenerative Diseases (DZNE),Department of Neurodegenerative Diseases
[2] Hertie-Institute for Clinical Brain Research,Department of Medical Biotechnology and Translational Medicine
[3] University of Tübingen,Department of Cell Biology
[4] University of Milan,Department of Molecular Embryology
[5] Harvard Medical School,Department of Epileptology
[6] Emmy Noether-Group for Stem Cell Biology,undefined
[7] Institute of Anatomy and Cell Biology,undefined
[8] University of Freiburg,undefined
[9] Werner Reichardt Center for Integrative Neuroscience (CIN),undefined
[10] University of Tübingen,undefined
[11] Genzyme,undefined
[12] a Sanofi Company,undefined
[13] Hertie Institute for Clinical Brain Research,undefined
[14] University of Tübingen and German Center for Neurodegenerative Diseases,undefined
[15] Center for Biological Signaling Studies (BIOSS),undefined
[16] University of Freiburg,undefined
来源
关键词
D O I
暂无
中图分类号
学科分类号
摘要
Mutations in the acid β-glucocerebrosidase (GBA1) gene, responsible for the lysosomal storage disorder Gaucher’s disease (GD), are the strongest genetic risk factor for Parkinson’s disease (PD) known to date. Here we generate induced pluripotent stem cells from subjects with GD and PD harbouring GBA1 mutations, and differentiate them into midbrain dopaminergic neurons followed by enrichment using fluorescence-activated cell sorting. Neurons show a reduction in glucocerebrosidase activity and protein levels, increase in glucosylceramide and α-synuclein levels as well as autophagic and lysosomal defects. Quantitative proteomic profiling reveals an increase of the neuronal calcium-binding protein 2 (NECAB2) in diseased neurons. Mutant neurons show a dysregulation of calcium homeostasis and increased vulnerability to stress responses involving elevation of cytosolic calcium. Importantly, correction of the mutations rescues such pathological phenotypes. These findings provide evidence for a link between GBA1 mutations and complex changes in the autophagic/lysosomal system and intracellular calcium homeostasis, which underlie vulnerability to neurodegeneration.
引用
收藏
相关论文
共 50 条
  • [41] Altered glutamate response and calcium dynamics in iPSC-derived striatal neurons from XDP patients
    Capetian, P.
    Stanslowsky, N.
    Bernhardi, E.
    Gruetz, K.
    Domingo, A.
    Brueggemann, N.
    Naujock, M.
    Seibler, P.
    Klein, C.
    Wegner, F.
    EXPERIMENTAL NEUROLOGY, 2018, 308 : 47 - 58
  • [42] Pharmacological Rescue of Mitochondrial Deficits in iPSC-Derived Neural Cells from Patients with Familial Parkinson's Disease
    Cooper, Oliver
    Seo, Hyemyung
    Andrabi, Shaida
    Guardia-Laguarta, Cristina
    Graziotto, John
    Sundberg, Maria
    McLean, Jesse R.
    Carrillo-Reid, Luis
    Xie, Zhong
    Osborn, Teresia
    Hargus, Gunnar
    Deleidi, Michela
    Lawson, Tristan
    Bogetofte, Helle
    Perez-Torres, Eduardo
    Clark, Lorraine
    Moskowitz, Carol
    Mazzulli, Joseph
    Chen, Li
    Volpicelli-Daley, Laura
    Romero, Norma
    Jiang, Houbo
    Uitti, Ryan J.
    Huang, Zhigao
    Opala, Grzegorz
    Scarffe, Leslie A.
    Dawson, Valina L.
    Klein, Christine
    Feng, Jian
    Ross, Owen A.
    Trojanowski, John Q.
    Lee, Virginia M. -Y.
    Marder, Karen
    Surmeier, D. James
    Wszolek, Zbigniew K.
    Przedborski, Serge
    Krainc, Dimitri
    Dawson, Ted M.
    Isacson, Ole
    SCIENCE TRANSLATIONAL MEDICINE, 2012, 4 (141)
  • [43] Transcriptomics analysis of human iPSC-derived dopaminergic neurons reveals a novel model for sporadic Parkinson's disease
    Krauskopf, Julian
    Eggermont, Kristel
    Da Costa, Rodrigo Furtado Madeiro
    Bohler, Sacha
    Hauser, Duncan
    Caiment, Florian
    de Kok, Theo M.
    Verfaillie, Catherine
    Kleinjans, Jos C.
    MOLECULAR PSYCHIATRY, 2022, 27 (10) : 4355 - 4367
  • [44] Transcriptomics analysis of human iPSC-derived dopaminergic neurons reveals a novel model for sporadic Parkinson’s disease
    Julian Krauskopf
    Kristel Eggermont
    Rodrigo Furtado Madeiro Da Costa
    Sacha Bohler
    Duncan Hauser
    Florian Caiment
    Theo M. de Kok
    Catherine Verfaillie
    Jos C. Kleinjans
    Molecular Psychiatry, 2022, 27 : 4355 - 4367
  • [45] Reply to: "Overlapping Ranges in Levels Indicate That Hexosylsphingosine Is Not a Clinically Relevant Biomarker for GBA1-Associated Parkinson's Disease"
    Gleason, Adenrele M.
    Tayebi, Nahid
    Lopez, Grisel J.
    Sidransky, Ellen
    MOVEMENT DISORDERS, 2022, 37 (08) : 1781 - 1782
  • [46] What we can learn from iPSC-derived cellular models of Parkinson's disease
    Caiazza, Maria Claudia
    Lang, Charmaine
    Wade-Martins, Richard
    RECENT ADVANCES IN PARKINSON'S DISEASE, 2020, 252 : 3 - 25
  • [47] Autologous iPSC-derived dopamine neuron grafts show considerable promise in a nonhuman primate model of Parkinson's disease
    Wakeman, Dustin R.
    MOVEMENT DISORDERS, 2015, 30 (08) : 1034 - 1034
  • [48] Ambroxol treatment of primary macrophages derived from patients with GBA-associated Parkinson's disease
    Kopytova, A.
    Nikolaev, M.
    Senkevich, K.
    Baydakova, G.
    Miliukhina, I.
    Zakharova, E.
    Pchelina, S.
    MOVEMENT DISORDERS, 2019, 34
  • [49] A Phase 1B Trial in GBA1-Associated Parkinson's Disease of BIA-28-6156, a Glucocerebrosidase Activator
    den Heijer, Jonas M.
    Kruithof, Annelieke C.
    Moerland, Matthijs
    Walker, Mike
    Dudgeon, Lindsay
    Justman, Craig
    Solomini, Imelda
    Splitalny, Leslie
    Leymarie, Nancy
    Khatri, Kshitij
    Cullen, Valerie C.
    Hilt, Dana C.
    Groeneveld, Geert Jan
    Lansbury, Peter
    MOVEMENT DISORDERS, 2023, 38 (07) : 1197 - 1208
  • [50] Impaired neuron differentiation in GBA-associated Parkinson's disease is linked to cell cycle defects in organoids
    Rosety, Isabel
    Zagare, Alise
    Saraiva, Claudia
    Nickels, Sarah
    Antony, Paul
    Almeida, Catarina
    Glaab, Enrico
    Halder, Rashi
    Velychko, Sergiy
    Rauen, Thomas
    Schoeler, Hans R.
    Bolognin, Silvia
    Sauter, Thomas
    Jarazo, Javier
    Kruger, Rejko
    Schwamborn, Jens C.
    NPJ PARKINSONS DISEASE, 2023, 9 (01)