Depletion of WFS1 compromises mitochondrial function in hiPSC-derived neuronal models of Wolfram syndrome

被引:13
作者
Zatyka, Malgorzata [1 ]
Rosenstock, Tatiana R. [1 ,10 ]
Sun, Congxin [1 ]
Palhegyi, Adina M. [1 ]
Hughes, Georgina W. [1 ]
Lara-Reyna, Samuel [2 ]
Astuti, Dewi [1 ]
di Maio, Alessandro [3 ]
Sciauvaud, Axel [4 ,5 ]
Korsgen, Miriam E. [1 ]
Stanulovic, Vesna [1 ]
Kocak, Gamze [1 ]
Rak, Malgorzata [6 ]
Pourtoy-Brasselet, Sandra [7 ]
Winter, Katherine [1 ]
Varga, Thiago [1 ]
Jarrige, Margot [4 ,5 ,7 ]
Polveche, Helene [7 ]
Correia, Joao [8 ]
Frickel, Eva-Maria [2 ]
Hoogenkamp, Maarten [1 ]
Ward, Douglas G. [1 ]
Aubry, Laetitia [4 ,5 ]
Barrett, Timothy [1 ,9 ]
Sarkar, Sovan [1 ]
机构
[1] Univ Birmingham, Inst Canc & Genom Sci, Inst Biomed Res, Coll Med & Dent Sci, Birmingham B15 2TT, England
[2] Univ Birmingham, Inst Microbiol & Infect, Birmingham B15 2TT, England
[3] Univ Birmingham, Coll Med & Dent Sci, Tech Hub Microscopy Facil, Birmingham B15 2TT, England
[4] AFM, INSERM, I STEM, UMR 861, F-91100 Corbeil Essonnes, France
[5] Univ Paris Saclay, Univ Evry, Inst Cellules Souches Traitement & Etud Malad Mono, INSERM, F-91100 Corbeil Essonnes, France
[6] Univ Paris Cite, INSERM, NeuroDiderot, F-75019 Paris, France
[7] AFM, CECS, I STEM, F-91100 Corbeil Essonnes, France
[8] Univ Birmingham, Coll Med & Dent Sci, COMPARE Adv Imaging Facil, Birmingham B15 2TT, England
[9] Birmingham Womens & Childrens Hosp, Dept Endocrinol, Steelhouse Lane, Birmingham B4 6NH, England
[10] Sygnature Discovery, Nottingham, England
来源
STEM CELL REPORTS | 2023年 / 18卷 / 05期
基金
英国惠康基金; 巴西圣保罗研究基金会; 英国生物技术与生命科学研究理事会;
关键词
ENDOPLASMIC-RETICULUM; MOLECULAR PARTNER; SYNDROME PROTEIN; ER STRESS; NEURODEGENERATION; DYSFUNCTION; CELLS; AUTOPHAGY; FISSION; ATPASE;
D O I
10.1016/j.stemcr.2023.04.002
中图分类号
Q813 [细胞工程];
学科分类号
摘要
Mitochondrial dysfunction involving mitochondria-associated ER membrane (MAM) dysregulation is implicated in the pathogenesis of late-onset neurodegenerative diseases, but understanding is limited for rare early-onset conditions. Loss of the MAM-resident protein WFS1 causes Wolfram syndrome (WS), a rare early-onset neurodegenerative disease that has been linked to mitochondrial abnormalities. Here we demonstrate mitochondrial dysfunction in human induced pluripotent stem cell-derived neuronal cells of WS patients. VDAC1 is identified to interact with WFS1, whereas loss of this interaction in WS cells could compromise mitochondrial function. Restoring WFS1 levels in WS cells reinstates WFS1-VDAC1 interaction, which correlates with an increase in MAMs and mitochondrial network that could positively affect mitochondrial function. Genetic rescue by WFS1 overexpression or pharmacological agents modulating mito-chondrial function improves the viability and bioenergetics of WS neurons. Our data implicate a role of WFS1 in regulating mitochon-drial functionality and highlight a therapeutic intervention for WS and related rare diseases with mitochondrial defects.
引用
收藏
页码:1090 / 1106
页数:17
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