Versican promotes T helper 17 cytotoxic inflammation and impedes oligodendrocyte precursor cell remyelination.
Samira GhorbaniEmily JelinekRajiv JainBenjamin BuehnerCenxiao LiBrian Mark LozinskiSusobhan SarkarDeepak K KaushikYifei DongThomas N WightSoheila-Karimi AbdolrezaeeGeert J SchenkEva M M StrijbisJeroen GeurtsPing ZhangChang-Chun LingVoon Wee YongPublished in: Nature communications (2022)
Remyelination failure in multiple sclerosis (MS) contributes to progression of disability. The deficient repair results from neuroinflammation and deposition of inhibitors including chondroitin sulfate proteoglycans (CSPGs). Which CSPG member is repair-inhibitory or alters local inflammation to exacerbate injury is unknown. Here, we correlate high versican-V1 expression in MS lesions with deficient premyelinating oligodendrocytes, and highlight its selective upregulation amongst CSPG members in experimental autoimmune encephalomyelitis (EAE) lesions modeling MS. In culture, purified versican-V1 inhibits oligodendrocyte precursor cells (OPCs) and promotes T helper 17 (Th17) polarization. Versican-V1-exposed Th17 cells are particularly toxic to OPCs. In NG2 CreER :MAPT mGFP mice illuminating newly formed GFP + oligodendrocytes/myelin, difluorosamine (peracetylated,4,4-difluoro-N-acetylglucosamine) treatment from peak EAE reduces lesional versican-V1 and Th17 frequency, while enhancing GFP + profiles. We suggest that lesion-elevated versican-V1 directly impedes OPCs while it indirectly inhibits remyelination through elevating local Th17 cytotoxic neuroinflammation. We propose CSPG-lowering drugs as potential dual pronged repair and immunomodulatory therapeutics for MS.
Keyphrases
- multiple sclerosis
- mass spectrometry
- induced apoptosis
- ms ms
- white matter
- oxidative stress
- poor prognosis
- cell cycle arrest
- traumatic brain injury
- regulatory t cells
- lipopolysaccharide induced
- dendritic cells
- endoplasmic reticulum stress
- signaling pathway
- cell proliferation
- single cell
- lps induced
- adipose tissue
- stem cells
- blood brain barrier
- metabolic syndrome
- subarachnoid hemorrhage
- combination therapy
- inflammatory response
- cerebral ischemia
- smoking cessation
- human health
- pi k akt
- wild type
- bone marrow
- drug induced