|
Ahmed, S.M.H., Maldera, J.A., Krunic,D., Paiva-Silva, G.O., Penalva, C., Teleman, A.A., Edgar, B.A., 2020. Fitness trade-offs incurred by ovary-to-gut steroid signalling in Drosophila. Nature 584, 415-419.
|
|
Bialecki, M., Shilton, A., Fichtenberg, C., Segraves, W.A., Thummel, C.S., 2002. Loss of the ecdysteroid-inducible E75A orphan nuclear receptor uncouples molting from metamorphosis in Drosophila. Dev. Cell 3, 209-220.
|
|
Brutscher, F.G.F., Hausmann, G., Jutz, L., Basler, K., 2025. Activation of the Drosophila innate immune system accelerates growth in cooperation with oncogenic Ras. PLoS Biol. 23, e3003068.
|
|
Dillard, C., Teles-Reis, J., Jain, A., Antunes, M.G., Ruiz-Duran, P., Qi, Y., Le Borgne, R., Jasper, H., Rusten, T.E., 2025. NF-κB signaling driven by oncogenic Ras contributes to tumorigenesis in a Drosophila carcinoma model. PLoS Biol. 23, e3002663.
|
|
Griffin, P., Dimitry, J.M., Sheehan, P.W., Lananna, B.V., Guo, C., Robinette, M.L., Hayes, M. E., Cedeno, M.R., Nadarajah, C.J., Ezerskiy, L.A., et al., 2019. Circadian clock protein Rev-erbα regulates neuroinflammation. Proc. Natl. Acad. Sci. U. S. A. 116, 5102-5107.
|
|
Guo, D.K., Zhu, Y., Sun, H.Y., Xu, X.Y., Zhang, S., Hao, Z.B., Wang, G.H., Mu, C.C., Ren, H.G., 2019. Pharmacological activation of REV-ERBα represses LPS-induced microglial activation through the NF-κB pathway. Acta Pharmacol. Sin. 40, 26-34.
|
|
Hariharan, I.K., Bilder, D., 2006. Regulation of imaginal disc growth by tumor-suppressor genes in Drosophila. Annu. Rev. Genet. 40, 335-361.
|
|
Ji, S.M., and Hoffmann, J.A., 2024. Toll-9 prevents the proliferation of injected oncogenic cells in adult flies. J. Genet. Genomics 51, 1331-1333.
|
|
Lemaitre, B., Nicolas, E., Michaut, L., Reichhart, J. M., Hoffmann, J. A., 1996. The dorsoventral regulatory gene cassette spatzle/Toll/cactus controls the potent antifungal response in Drosophila adults. Cell 86, 973-983.
|
|
Nussleinvolhard, C., Wieschaus, E., 1980. Mutations affecting segment number and polarity in Drosophila. Nature 287, 795-801.
|
|
Reinking, J., Lam, M.M., Pardee, K., Sampson, H.M., Liu, S., Yang, P., Williams, S., White, W., Lajoie, G., Edwards, A., et al., 2005. The Drosophila nuclear receptor E75 contains heme and is gas responsive. Cell 122, 195-207.
|
|
Valanne, S., Wang, J.H., Ramet, M., 2011. The Drosophila Toll signaling pathway. J. Immunol. 186, 649-656.
|
|
Wang, X.P., Guo, Y.F., Lin, P., Yu, M., Song, S., Xu, W.Y., Kong, D., Wang, Y., Zhang, Y.X., Lu, F., et al., 2024. Nuclear receptor E75/NR1D2 promotes tumor malignant transformation by integrating Hippo and Notch pathways. EMBO J. 43, 6336-6363.
|
|
Wang, X.P., Wang, H., Liu, L., Li, S., Emery, G., Chen, J., 2020. Temporal coordination of collective migration and lumen formation by antagonism between two nuclear receptors. iScience 23, 101335.
|
|
Zhao, S., Guo, Y., Kuang, X., Li, X., Wu, C., Lin, P., Xie, Q., Zhai, Z., Kong, D., Ma, X., 2025. Hemocytes facilitate interclonal cooperation-induced tumor malignancy by hijacking the innate immune system in Drosophila. EMBO J. 44, 5394-5428.
|