| Literature DB >> 33708218 |
Quan Yang1,2, Hongyan Xie1, Xing Li3, Yuanfa Feng1, Shihao Xie1, Jiale Qu1, Anqi Xie1, Yiqiang Zhu1, Lu Zhou1, Jinxue Yang1, Xiaohao Hu1, Haixia Wei1, Huaina Qiu1, Wenjuan Qin4, Jun Huang1,2.
Abstract
The accumulation of myeloid-derived suppressor cells (MDSCs) is one of the major obstacles to achieve an appropriate anti-tumor immune response and successful tumor immunotherapy. MDSCs in tumor-bearing hosts are primarily polymorphonuclear (PMN-MDSCs). However, the mechanisms regulating the development of MDSCs remain poorly understood. In this report, we showed that interferon regulatory factor 4 (IRF4) plays a key role in the development of PMN-MDSCs, but not monocytic MDSCs. IRF4 deficiency caused a significant elevation of PMN-MDSCs and enhanced the suppressive activity of PMN-MDSCs, increasing tumor growth and metastasis in mice. Mechanistic studies showed that c-Myc was up-regulated by the IRF4 protein. Over-expression of c-Myc almost abrogated the effects of IRF4 deletion on PMN-MDSCs development. Importantly, the IRF4 expression level was negatively correlated with the PMN-MDSCs frequency and tumor development but positively correlated with c-Myc expression in clinical cancer patients. In summary, this study demonstrated that IRF4 represents a novel regulator of PMN-MDSCs development in cancer, which may have predictive value for tumor progression.Entities:
Keywords: c-Myc; cancer; immunosuppression; interferon regulatory factor 4 (IRF4); myeloid-derived suppressor cells (MDSCs)
Year: 2021 PMID: 33708218 PMCID: PMC7940347 DOI: 10.3389/fimmu.2021.627072
Source DB: PubMed Journal: Front Immunol ISSN: 1664-3224 Impact factor: 7.561