DUX4 expression activates JNK and p38 MAP kinases in myoblasts

Author:

Brennan Christopher M.12ORCID,Hill Abby S.1,St. Andre Michael1,Li Xianfeng1,Madeti Vijaya34,Breitkopf Susanne56,Garren Seth34,Xue Liang7,Gilbert Tamara89,Hadjipanayis Angela34,Monetti Mara56,Emerson Charles P.110,Moccia Robert1,Owens Jane1,Christoforou Nicolas1ORCID

Affiliation:

1. Pfizer Inc. 1 Rare Disease Research Unit , , Cambridge, MA 02139 , USA

2. Pfizer Inc. 2 WRDM Postdoctoral Program , , Cambridge, MA 02139 , USA

3. NGS Technology Center 3 , Inflammation and Immunology Research Unit , , Cambridge, MA 02139 , USA

4. Pfizer 3 , Inflammation and Immunology Research Unit , , Cambridge, MA 02139 , USA

5. Proteomics Technology Center 4 , Internal Medicine Research Unit , , Cambridge, MA 02139 , USA

6. Pfizer 4 , Internal Medicine Research Unit , , Cambridge, MA 02139 , USA

7. Pfizer Inc. 5 Machine Learning and Computational Science , , Cambridge, MA 02139 , USA

8. High Content Imaging Technology Center 6 , Internal Medicine Research Unit , , Cambridge, MA 02139 , USA

9. Pfizer 6 , Internal Medicine Research Unit , , Cambridge, MA 02139 , USA

10. University of Massachusetts Medical School 7 Wellstone Muscular Dystrophy Program, Department of Neurology , , Worcester, MA 01655 , USA

Abstract

ABSTRACT Facioscapulohumeral muscular dystrophy (FSHD) is caused by misexpression of the DUX4 transcription factor in skeletal muscle that results in transcriptional alterations, abnormal phenotypes and cell death. To gain insight into the kinetics of DUX4-induced stresses, we activated DUX4 expression in myoblasts and performed longitudinal RNA sequencing paired with proteomics and phosphoproteomics. This analysis revealed changes in cellular physiology upon DUX4 activation, including DNA damage and altered mRNA splicing. Phosphoproteomic analysis uncovered rapid widespread changes in protein phosphorylation following DUX4 induction, indicating that alterations in kinase signaling might play a role in DUX4-mediated stress and cell death. Indeed, we demonstrate that two stress-responsive MAP kinase pathways, JNK and p38, are activated in response to DUX4 expression. Inhibition of each of these pathways ameliorated DUX4-mediated cell death in myoblasts. These findings uncover that the JNK pathway is involved in DUX4-mediated cell death and provide additional insights into the role of the p38 pathway, a clinical target for the treatment of FSHD.

Funder

Pfizer

Publisher

The Company of Biologists

Subject

General Biochemistry, Genetics and Molecular Biology,Immunology and Microbiology (miscellaneous),Medicine (miscellaneous),Neuroscience (miscellaneous)

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