interactivefly's profile picture. Drosophila neurobiology, bioinformatics, gene function and regulation, developmental biology

Thomas Brody

@interactivefly

Drosophila neurobiology, bioinformatics, gene function and regulation, developmental biology

Moon, M., Yun, J., Pyeon, M., Yun, J., Yang, J., Yeom, H. D., Lee, G., Choi, Y., Lee, J., Lee, J. H. (2025). Phenethyl Acetate as an Agonist of Insect Odorant Receptor Co-Receptor (Orco): Molecular Mechanisms and Functional Insights. Int J Mol Sci, 26(11) mdpi.com/1422-0067/26/1…


Okasha, M., Chen, J., Ayekoi, A., Jacob, E., Radtke, V., Schmidt, A., Bacher, A., Weber, S., Schleicher, E. (2025). Linear free energy relationship between reduction potential and photoreduction rate: studies on Drosophila cryptochrome. Febs j, febs.onlinelibrary.wiley.com/doi/10.1111/fe…


Kim, K. Y., Hwang, Y. L., Yeom, S., Kwon, S. H., Jeon, S. H. (2025). Pss knockdown in the midgut causes growth retardation in Drosophila similar to that in human LMHD. Dev Dyn, anatomypubs.onlinelibrary.wiley.com/doi/10.1002/dv…


Fletcher, S. J., Bardossy, E., Tome-Poderti, L., Moss, T., Mongelli, V., Frangeul, L., Blanc, H., Verdier, Y., Vinh, J., Mukherjee, S., Saleh, M. C. (2025). Hsc70-4: An unanticipated mediator of dsRNA internalization in Drosophila. Sci Adv, 11(20):eadv1286 science.org/doi/10.1126/sc…


Krishnan, H., Muzaffar, S., Sharma, S., Ramya, V., Ghosh, A., Sowdhamini, R., Padinjat, R. (2025). Conserved biochemical activity and function of phosphatidylinositol 5 phosphate 4 kinase regulates growth & development. Cell Sci, journals.biologists.com/jcs/article-ab…


Hu, J., Li, X., Lomaev, D., Vorobyeva, N. E., Levine, M., Erokhin, M., Chetverina, D. (2025). Vostok: A looping factor for the organization of the regulatory genome in the Drosophila brain. Mol Cell, 85(12):2442-2451 cell.com/molecular-cell…


Huang, R. N., Luo, S. Y., Huang, T., ...., Li, L. Y., Tang, B., Qiao, J. D. (2025). The interaction of UBR4, LRP1, and OPHN1 in refractory epilepsy: Drosophila model to investigate the oligogenic effect on epilepsy. Neurobiol Dis, 212:106955 sciencedirect.com/science/articl…


Li, J., Song, J., Yan, B., Wu, H., ...., Jia, J., Weiss, H. L., Evers, B. M. (2025). Neurotensin inhibits AMPK activity and enhances FABP1 expression in small intestinal epithelial cells associated with obesity and aging. Exp Mol Med, 57(6):1189-1201 nature.com/articles/s1227…


Marnas, P., Lupold, S., ..., Zarogiannis, S., Rouka, E. (2025). Modeling COPD in Drosophila by cigarette smoke: functional changes and alterations in the expression of COPD-relevant orthologous genes. Am J Physiol Regul Integr Comp Physiol, 329(1):R13-r19 journals.physiology.org/doi/full/10.11…


Long, J., Jones, S. G., Serna, A., ..., Verstreken, P., Huynen, M. A., Luhy, K., Coll-Tane, M., Schenck, A. (2025). A conserved epilepsy-associated gene co-expression module identifies increased metabolic rate as a shared pathomechanism. Dis Model Mech, journals.biologists.com/dmm/article/do…


Jiang, H., Satoh, Y., Yamamura, R., Ooshio, T., ...., Hirata, T., Osawa, T., Goda, K., Sonoshita, M. (2025). Inhibition of NAD-GPx4 axis and MEK triggers ferroptosis to suppress pancreatic ductal adenocarcinoma. Mol Ther, cell.com/molecular-ther…


Liu, Z., Du, G., Chen, Y., Chen, H. (2025). Age-associated decline of Coenzyme A leads to intestinal stem cells dysfunction via disturbing iron homeostasis. PLoS Genet, 21(6):e1011704 journals.plos.org/plosgenetics/a…


Lee, S. H., Hwang, D., ..., Yun, E. Y. (2025). The Identification of a Glucuronyltransferase-Related Gene, GlcAT-S, with Putative Mucus Protection and Anti-Inflammatory Effects from Gut-Damaged Drosophila by Dextran Sulfate Sodium (DSS). Biology (Basel), mdpi.com/2079-7737/14/5…


Hamilton, W., Massey, J., Hardy, E., Lopez-Madrigal, S., Phelps, M., Martin, M., Newton, I. (2025). Wolbachia uses ankyrin repeats to target specific fly proteins. bioRxiv, biorxiv.org/content/10.110…


Lin, Z., He, Z., Guo, J., Ji, X., Hu, Z., Tang, Y., Wei, C., Liu, J., Wu, W., Ma, J., Jiao, R. (2025). Xgr is involved in body size control in Drosophila through promoting glucose uptake in the Malpighian tubules. J Genet Genomics sciencedirect.com/science/articl…


De Backer, J. F., Karges, T., Papst, J., Pinar, Z. N., Coman, C., Ahrends, R., Xu, Y., Garcia-Ccceres, C., Grunwald Kadow, I. C. (2025). Adenosine signaling in glia modulates metabolic state-dependent behavior in Drosophila.Cell Rep, 44(6):115765 cell.com/cell-reports/f…

cell.com

Adenosine signaling in glia modulates metabolic state-dependent behavior in Drosophila

De Backer et al. dissect the roles of adenosine signaling in glia subtypes in the fly nervous system and their relationship to feeding-state-dependent behavior. Their results provide a potentially...


Amos, L., Wigby, S., Dougherty, L. R. (2025). Short-term increases in rival number improves single mating productivity in male Drosophila. Behav Ecol, 36(3):araf032 academic.oup.com/beheco/article…


Gopfert, M., Yang, J., Rabadiya, D., Riedel, D., Moussian, B., Behr, M. (2025). Exoskeletal cuticle proteins enable Drosophila locomotion. Acta Biomater sciencedirect.com/science/articl…


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