Insights into the mechanism of oligodendrocyte protection and remyelination enhancement by the integrated stress response

Author:

Chen Yanan1ORCID,Quan Songhua2,Patil Vaibhav2,Kunjamma Rejani B.2,Tokars Haley M.2,Leisten Eric D.2,Joy Godwin1,Wills Samantha1,Chan Jonah R.3ORCID,Wong Yvette C.2,Popko Brian2ORCID

Affiliation:

1. Department of Biology Loyola University Chicago Chicago Illinois USA

2. Department of Neurology Northwestern University, Feinberg School of Medicine Chicago Illinois USA

3. Weill Institute for Neuroscience, Department of Neurology University of California San Francisco California USA

Abstract

Abstractcentral nervous system (CNS) inflammation triggers activation of the integrated stress response (ISR). We previously reported that prolonging the ISR protects remyelinating oligodendrocytes and promotes remyelination in the presence of inflammation. However, the exact mechanisms through which this occurs remain unknown. Here, we investigated whether the ISR modulator Sephin1 in combination with the oligodendrocyte differentiation enhancing reagent bazedoxifene (BZA) is able to accelerate remyelination under inflammation, and the underlying mechanisms mediating this pathway. We find that the combined treatment of Sephin1 and BZA is sufficient to accelerate early‐stage remyelination in mice with ectopic IFN‐γ expression in the CNS. IFN‐γ, which is a critical inflammatory cytokine in multiple sclerosis (MS), inhibits oligodendrocyte precursor cell (OPC) differentiation in culture and triggers a mild ISR. Mechanistically, we further show that BZA promotes OPC differentiation in the presence of IFN‐γ, while Sephin1 enhances the IFN‐γ‐induced ISR by reducing protein synthesis and increasing RNA stress granule formation in differentiating oligodendrocytes. Finally, pharmacological suppression of the ISR blocks stress granule formation in vitro and partially lessens the beneficial effect of Sephin1 on disease progression in a mouse model of MS, experimental autoimmune encephalitis (EAE). Overall, our findings uncover distinct mechanisms of action of BZA and Sephin1 on oligodendrocyte lineage cells under inflammatory stress, suggesting that a combination therapy may effectively promote restoring neuronal function in MS patients.

Funder

Dr. Miriam and Sheldon G. Adelson Medical Research Foundation

National Institute of Neurological Disorders and Stroke

National Multiple Sclerosis Society

National Institute of General Medical Sciences

Publisher

Wiley

Subject

Cellular and Molecular Neuroscience,Neurology

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