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Riedstra, C.

Publications and source records attributed to Riedstra, C..

2 recordsLinked to original sources

An epigenetic switch in vascular phenotype augments anti-tumor immunity

The abnormal tumor vasculature can present a barrier to the infiltration of anti-tumor immune cells, which impairs immune surveillance and response to immunotherapy. Here, we show that targeting the epigenetic factor DNA methyltransferase 1 in endothelial cells (ECs) reduces angiogenesis while imparting profound changes to the tumor immune microenvironment (TIME), including increased proportions of CD4+ memory T-cells and NK cells. Depleting CD4+ T-cells, or blocking lymphocyte egress from the lymph nodes with FTY720, rescues tumor growth in mice with conditional deletion of Dnmt1 in ECs (Dnmt1iECKO) and dramatically shortens overall survival, whereas NK cells are dispensable. Tumors implanted in Dnmt1iECKO mice show reduced vascular branching, elevated expression of Vcam1, increased vessel-associated T-cells, and a shift in vascular specification including increased proportions of immune-permissive post-capillary venules (PCVs) and interferon-stimulated ECs (IFN-ECs). Deleting Dnmt1 in EC cultures strikingly potentiates responses to combinations of IFN{gamma} and TNF and, notably, up-regulates important T-cell co-stimulatory molecules for memory CD4+ T-cells, including Icosl, Cd40, and Tnfsf4. Finally, immune checkpoint blockade (ICB) administered to Dnmt1iECKO mice with experimental melanoma lung metastasis reduces tumor burden, with some mice showing tumor eradication. Our findings identify endothelial Dnmt1 as a key regulator of vascular-mediated anti-tumor immunity, providing a rationale for integrating epigenetic modulation of the vasculature with cancer immunotherapy regimens.

cancer biology↗

Characterization of methylation status of the nuclear hormone receptor DAX-1 in human cancer

The orphan receptor DAX-1 plays an essential role in human development, steroid hormone synthesis and the maintenance of embryonic stem cell pluripotency. Recent studies have demonstrated DAX-1 is involved in cancer development, and, depending on the specific cancer type, has a negative or positive effect on cancer growth. In order to better understand the mechanism of DAX-1 gene regulation in various cancer cell lines, the epigenetic regulation of DAX-1 was investigated. Following confirming levels of DAX-1 expression at both the mRNA and protein levels, the overall methylation status of the DAX-1 gene was probed using methylation-sensitive restriction enzyme analysis. To determine the molecular mechanism of DNA methylation of the DAX-1 gene, chromatin immunoprecipitation assays identified key methylating proteins that localize to specific CpG islands in the DAX-1 promoter. In conclusion, this study demonstrates that methylation of key cytosine residues in CpG islands within the DAX-1 promoter play a central role in regulating DAX-1 expression and varying degrees of methylation result in differences in DAX-1 expression in human cancer cell lines.

molecular biology↗