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An integrated multi-omic analysis of iPSC-derived motor neurons from C9ORF72 ALS patients.

Authors :
NeuroLINCS Consortium
NeuroLINCS Consortium
Li, Jonathan
Lim, Ryan G
Kaye, Julia A
Dardov, Victoria
Coyne, Alyssa N
Wu, Jie
Milani, Pamela
Cheng, Andrew
Thompson, Terri G
Ornelas, Loren
Frank, Aaron
Adam, Miriam
Banuelos, Maria G
Casale, Malcolm
Cox, Veerle
Escalante-Chong, Renan
Daigle, J Gavin
Gomez, Emilda
Hayes, Lindsey
Holewenski, Ronald
Lei, Susan
Lenail, Alex
Lima, Leandro
Mandefro, Berhan
Matlock, Andrea
Panther, Lindsay
Patel-Murray, Natasha Leanna
Pham, Jacqueline
Ramamoorthy, Divya
Sachs, Karen
Shelley, Brandon
Stocksdale, Jennifer
Trost, Hannah
Wilhelm, Mark
Venkatraman, Vidya
Wassie, Brook T
Wyman, Stacia
Yang, Stephanie
NYGC ALS Consortium
Van Eyk, Jennifer E
Lloyd, Thomas E
Finkbeiner, Steven
Fraenkel, Ernest
Rothstein, Jeffrey D
Sareen, Dhruv
Svendsen, Clive N
Thompson, Leslie M
NeuroLINCS Consortium
NeuroLINCS Consortium
Li, Jonathan
Lim, Ryan G
Kaye, Julia A
Dardov, Victoria
Coyne, Alyssa N
Wu, Jie
Milani, Pamela
Cheng, Andrew
Thompson, Terri G
Ornelas, Loren
Frank, Aaron
Adam, Miriam
Banuelos, Maria G
Casale, Malcolm
Cox, Veerle
Escalante-Chong, Renan
Daigle, J Gavin
Gomez, Emilda
Hayes, Lindsey
Holewenski, Ronald
Lei, Susan
Lenail, Alex
Lima, Leandro
Mandefro, Berhan
Matlock, Andrea
Panther, Lindsay
Patel-Murray, Natasha Leanna
Pham, Jacqueline
Ramamoorthy, Divya
Sachs, Karen
Shelley, Brandon
Stocksdale, Jennifer
Trost, Hannah
Wilhelm, Mark
Venkatraman, Vidya
Wassie, Brook T
Wyman, Stacia
Yang, Stephanie
NYGC ALS Consortium
Van Eyk, Jennifer E
Lloyd, Thomas E
Finkbeiner, Steven
Fraenkel, Ernest
Rothstein, Jeffrey D
Sareen, Dhruv
Svendsen, Clive N
Thompson, Leslie M
Source :
iScience; vol 24, iss 11, 103221; 2589-0042
Publication Year :
2021

Abstract

Neurodegenerative diseases are challenging for systems biology because of the lack of reliable animal models or patient samples at early disease stages. Induced pluripotent stem cells (iPSCs) could address these challenges. We investigated DNA, RNA, epigenetics, and proteins in iPSC-derived motor neurons from patients with ALS carrying hexanucleotide expansions in C9ORF72. Using integrative computational methods combining all omics datasets, we identified novel and known dysregulated pathways. We used a C9ORF72 Drosophila model to distinguish pathways contributing to disease phenotypes from compensatory ones and confirmed alterations in some pathways in postmortem spinal cord tissue of patients with ALS. A different differentiation protocol was used to derive a separate set of C9ORF72 and control motor neurons. Many individual -omics differed by protocol, but some core dysregulated pathways were consistent. This strategy of analyzing patient-specific neurons provides disease-related outcomes with small numbers of heterogeneous lines and reduces variation from single-omics to elucidate network-based signatures.

Details

Database :
OAIster
Journal :
iScience; vol 24, iss 11, 103221; 2589-0042
Notes :
application/pdf, iScience vol 24, iss 11, 103221 2589-0042
Publication Type :
Electronic Resource
Accession number :
edsoai.on1367381626
Document Type :
Electronic Resource