Modulation of Tetraspanin 32 (TSPAN32) Expression in T Cell-Mediated Immune Responses and in Multiple Sclerosis.
Salvo Danilo LombardoEmanuela MazzonMaria Sofia BasileGiorgia CampoFederica CorsicoMario PrestiPlacido BramantiKatia ManganoMaria Cristina PetraliaFerdinando NicolettiPaolo FagonePublished in: International journal of molecular sciences (2019)
Tetraspanins are a conserved family of proteins involved in a number of biological processes including, cell-cell interactions, fertility, cancer metastasis and immune responses. It has previously been shown that TSPAN32 knockout mice have normal hemopoiesis and B-cell responses, but hyperproliferative T cells. Here, we show that TSPAN32 is expressed at higher levels in the lymphoid lineage as compared to myeloid cells. In vitro activation of T helper cells via anti-CD3/CD28 is associated with a significant downregulation of TSPAN32. Interestingly, engagement of CD3 is sufficient to modulate TSPAN32 expression, and its effect is potentiated by costimulation with anti-CD28, but not anti-CTLA4, -ICOS nor -PD1. Accordingly, we measured the transcriptomic levels of TSPAN32 in polarized T cells under Th1 and Th2 conditions and TSPAN32 resulted significantly reduced as compared with unstimulated cells. On the other hand, in Treg cells, TSPAN32 underwent minor changes upon activation. The in vitro data were finally translated into the context of multiple sclerosis (MS). Encephalitogenic T cells from Myelin Oligodendrocyte Glycoprotein (MOG)-Induced Experimental Autoimmune Encephalomyelitis (EAE) mice showed significantly lower levels of TSPAN32 and increased levels of CD9, CD53, CD82 and CD151. Similarly, in vitro-activated circulating CD4 T cells from MS patients showed lower levels of TSPAN32 as compared with cells from healthy donors. Overall, these data suggest an immunoregulatory role for TSPAN32 in T helper immune response and may represent a target of future immunoregulatory therapies for T cell-mediated autoimmune diseases.
Keyphrases
- immune response
- multiple sclerosis
- induced apoptosis
- cell cycle arrest
- dendritic cells
- single cell
- signaling pathway
- poor prognosis
- end stage renal disease
- ejection fraction
- cell death
- ms ms
- nk cells
- white matter
- type diabetes
- peritoneal dialysis
- squamous cell carcinoma
- mesenchymal stem cells
- newly diagnosed
- cell proliferation
- long non coding rna
- machine learning
- binding protein
- skeletal muscle
- inflammatory response
- chronic kidney disease
- electronic health record
- prognostic factors
- big data
- rna seq
- insulin resistance
- childhood cancer