FUT8-mediated aberrant N-glycosylation of B7H3 suppresses the immune response in triple-negative breast cancer

Yun Huang(Sun Yat-sen University), Hailiang Zhang(Sun Yat-sen University), Zhi‐Ling Li(Sun Yat-sen University), Tian Du(Sun Yat-sen University), Yuhong Chen(Sun Yat-sen University), Yan Wang(Sun Yat-sen University), Huan-he Ni(Sun Yat-sen University), Kaiming Zhang(Sun Yat-sen University), Jia Mai(Sun Yat-sen University), Bingxin Hu(Sun Yat-sen University), Jun-Hao Huang(Sun Yat-sen University), Li-Huan Zhou(Sun Yat-sen University), Dong Yang(Sun Yat-sen University), Xiao-Dan Peng(Sun Yat-sen University), Gong‐Kan Feng(Sun Yat-sen University), Jun Tang(Sun Yat-sen University), Xiao‐Feng Zhu(Sun Yat-sen University), Rong Deng(Sun Yat-sen University)
Nature Communications
May 11, 2021
Cited by 180Open Access
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Abstract

Most patients with triple negative breast cancer (TNBC) do not respond to anti-PD1/PDL1 immunotherapy, indicating the necessity to explore immune checkpoint targets. B7H3 is a highly glycosylated protein. However, the mechanisms of B7H3 glycosylation regulation and whether the sugar moiety contributes to immunosuppression are unclear. Here, we identify aberrant B7H3 glycosylation and show that N-glycosylation of B7H3 at NXT motif sites is responsible for its protein stability and immunosuppression in TNBC tumors. The fucosyltransferase FUT8 catalyzes B7H3 core fucosylation at N-glycans to maintain its high expression. Knockdown of FUT8 rescues glycosylated B7H3-mediated immunosuppressive function in TNBC cells. Abnormal B7H3 glycosylation mediated by FUT8 overexpression can be physiologically important and clinically relevant in patients with TNBC. Notably, the combination of core fucosylation inhibitor 2F-Fuc and anti-PDL1 results in enhanced therapeutic efficacy in B7H3-positive TNBC tumors. These findings suggest that targeting the FUT8-B7H3 axis might be a promising strategy for improving anti-tumor immune responses in patients with TNBC.


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