Tumor-derived cytokine enhances bitter sensing through remote control of bitter taste neurons via the Upd3/Spz5/Toll-6 axis in Drosophila

下调和上调 苦味 品味 咖啡因 黑腹果蝇 细胞因子 受体 生物 神经科学 群体感应 外围设备 体内 病态行为 表型 医学 RNA干扰 药理学 果蝇属(亚属) 摄食行为 免疫学 细胞生物学 味觉感受器 促炎细胞因子 免疫系统 回避行为 免疫 黑腹菌 食欲 化学 岛叶皮质 癌症研究 中枢神经系统
作者
Benjiang Qiao,Lingzhi Wu,Limin Chen,Jinyan Huang,Pumin Zhang,Qiaoran Li
出处
期刊:Proceedings of the National Academy of Sciences of the United States of America [National Academy of Sciences]
卷期号:123 (29): e2535541123-e2535541123
标识
DOI:10.1073/pnas.2535541123
摘要

The sense of taste is essential as it governs appetite and the feeding process. However, it is largely unknown whether and how tumors in a host communicate with peripheral taste sensing. Using the well-established yki S168A tumor models in Drosophila melanogaster , we found that flies carrying brain or gut tumors exhibit enhanced avoidance of bitter compounds such as caffeine but showed no avoidance of sucrose, and the degree of the avoidance was correlated with severity of the tumor phenotype. Through RNAi screening of upregulated cytokines secreted by malignant tumors, we identified Upd3 as a key factor in this process. Tumor-derived Upd3 promotes systematic increase of Spz5 expression, a fly neurotrophin, which in turn activates the Toll-6 receptor in peripheral bitter sensing neurons, leading to upregulation of the bitter-sensing receptor Gr66a. In vivo Ca 2+ imaging demonstrated heightened responses to caffeine by Gr66a + neurons in tumor-bearing flies. Interestingly, a similar phenomenon was observed in murine tumor models, where tumors also caused behavioral hypersensitivity to bitter tastants. Our findings reveal how tumors affect animals’ feeding behavior as well as the underlying mechanism. Our findings also suggest that such tumor-induced behavioral alterations are likely conserved across species.
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