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Loss of fragile site-associated tumor suppressor promotes antitumor immunity via macrophage polarization.

Lijuan Zhang | Kai Zhang | Jieyou Zhang | Jinrong Zhu | Qing Xi | Huafeng Wang | Zimu Zhang | Yingnan Cheng | Guangze Yang | Hongkun Liu | Xiangdong Guo | Dongmei Zhou | Zhenyi Xue | Yan Li | Qi Zhang | Yurong Da | Li Liu | Zhinan Yin | Zhi Yao | Rongxin Zhang
Nature communications | 2021

Common fragile sites (CFSs) are specific breakage-prone genomic regions and are present frequently in cancer cells. The (E2-independent) E3 ubiquitin-conjugating enzyme FATS (fragile site-associated tumor suppressor) has antitumor activity in cancer cells, but the function of FATS in immune cells is unknown. Here, we report a function of FATS in tumor development via regulation of tumor immunity. Fats-/- mice show reduced subcutaneous B16 melanoma and H7 pancreatic tumor growth compared with WT controls. The reduced tumor growth in Fats-/- mice is macrophage dependent and is associated with a phenotypic shift of macrophages within the tumor from tumor-promoting M2-like to antitumor M1-like macrophages. In addition, FATS deficiency promotes M1 polarization by stimulating and prolonging NF-κB activation by disrupting NF-κB/IκBα negative feedback loops and indirectly enhances both CD4+ T helper type 1 (Th1) and cytotoxic T lymphocyte (CTL) adaptive immune responses to promote tumor regression. Notably, transfer of Fats-/- macrophages protects mice against B16 melanoma. Together, these data suggest that FATS functions as an immune regulator and is a potential target in cancer immunotherapy.

Pubmed ID: 34262035

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