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Gioulbasani, M.

Publications and source records attributed to Gioulbasani, M..

2 recordsLinked to original sources

Invariant Natural Killer T cells control positively and negatively the development of hepatocellular carcinoma

The liver routinely encounters antigens from the gut, triggering pro- inflammatory responses. Unresolved inflammation can lead to liver damage, steatosis, fibrosis, cirrhosis, and eventually hepatocellular carcinoma (HCC). HCC is influenced by various immune cells, including invariant natural killer T (iNKT) cells, which exhibit both innate and adaptive immunity traits. Here, we examined iNKT cell dynamics in a diethyl-nitrosamine (DEN)-induced HCC mouse model. We observed a significant reduction in iNKT cell numbers in HCC livers due to apoptosis and impaired cytokine production. CD1d-deficient mice, which lack iNKT cells, displayed delayed tumor initiation and lower tumor and foci number. However, these tumors were larger in size and characterized by enhanced proliferation and immunosuppression. Interestingly, adoptive transfer of healthy iNKT cells post-tumor establishment reduced tumor burden, highlighting their potential therapeutic role. Our findings suggest that iNKT cells contribute to early HCC development, while in later stages they help to control tumor growth, thus underscoring their complex role in liver carcinogenesis. Further understanding of iNKT cell functions may inform novel immunotherapeutic strategies for HCC management.

immunology↗

TET proteins regulate Drosha expression and impact microRNAs in iNKT cells

DNA demethylases TET2 and TET3 play a fundamental role in thymic invariant natural killer T (iNKT) cell differentiation by mediating DNA demethylation of genes encoding for lineage specifying factors. Paradoxically, differential gene expression analysis revealed that significant number of genes were upregulated upon TET2 and TET3 loss in iNKT cells. This unexpected finding could be potentially explained if loss of TET proteins was reducing the expression of proteins that suppress gene expression. In this study, we discover that TET2 and TET3 synergistically regulate Drosha expression, by generating 5hmC across the gene body and by impacting chromatin accessibility. As DROSHA is involved in microRNA biogenesis, we proceed to investigate the impact of TET2/3 loss on microRNAs in iNKT cells. We report that among the downregulated microRNAs are members of the Let-7 family that downregulate in vivo the expression of the iNKT cell lineage specifying factor PLZF. Our data link TET proteins with microRNA expression and reveal an additional layer of TET mediated regulation of gene expression.

immunology↗