Phosphoantigen-driven dissociation of butyrophilin oligomers activates γδ T cells
Abstract
γδ T cells represent a promising avenue for cancer immunotherapy. The Vγ9Vδ2 T-cell receptor (TCR), which is expressed by the predominant subset of γδ T cells, responds to phosphoantigen (pAg)-engaged butyrophilins (BTNs) on various cancer cells. However, the molecular mechanism underlying the pAg-mediated activation of Vγ9Vδ2 TCRs remains a subject of debate. Here, we employed an integrative approach to elucidate the mechanism of pAg reactivity in Vγ9Vδ2 T cells. Our results demonstrate that BTNs form higher-order oligomers in the absence of pAg. Upon pAg binding, these higher-order oligomers dissociate into separate tetramers, enabling Vγ9Vδ2 TCR engagement. This pAg-induced dissociation of higher-order BTN oligomers is critical for pAg-mediated activation of γδ T cells. Our findings reveal a mechanism of BTN higher-order oligomer dissociation-driven pAg sensing, providing valuable insight for future immunotherapeutic strategies.
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Authors: Weizhi Xin, Bangdong Huang, Weijie Gao, Wenjia Zhang, Yundi Hu, Yuehua Liu, Liang Enyuan, Jin Chen, Yigong Shi, Qiang Su, Qiang Zhou
Institutions: Fudan University, Center for Life Sciences, Tsinghua University, Westlake University, Bio-Medical Science (South Korea)