| Literature DB >> 26561547 |
Matthew G Thompson1, Michelle Larson1, Amy Vidrine1, Kelly Barrios1, Flor Navarro1, Kaitlyn Meyers1, Patricia Simms1, Kushal Prajapati1, Lennox Chitsike1, Lance M Hellman2, Brian M Baker2, Stephanie K Watkins3.
Abstract
Tumor-associated myeloid cells, including dendritic cells (DCs) and macrophages, are immune suppressive. This study demonstrates a novel mechanism involving FOXO3 and NF-κB RelA that controls myeloid cell signaling and impacts their immune-suppressive nature. We find that FOXO3 binds NF-κB RelA in the cytosol, impacting both proteins by preventing FOXO3 degradation and preventing NF-κB RelA nuclear translocation. The location of protein-protein interaction was determined to be near the FOXO3 transactivation domain. In turn, NF-κB RelA activation was restored upon deletion of the same sequence in FOXO3 containing the DNA binding domain. We have identified for the first time, to our knowledge, a direct protein-protein interaction between FOXO3 and NF-κB RelA in tumor-associated DCs. These detailed biochemical interactions provide the foundation for future studies to use the FOXO3-NF-κB RelA interaction as a target to enhance tumor-associated DC function to support or enhance antitumor immunity.Entities:
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Year: 2015 PMID: 26561547 PMCID: PMC4670825 DOI: 10.4049/jimmunol.1501758
Source DB: PubMed Journal: J Immunol ISSN: 0022-1767 Impact factor: 5.422