Authors
Perrimon, N., Hu, Y., Nahid, M. A., Kalina, J., Veal, A., Qadiri, M., Kim, A.-R.
Abstract
Secreted proteins are synthesized within the cell and actively transported outside, where they contribute to development, physiology, immunity, and cellcell communication. In Drosophila melanogaster, many secreted signaling pathways are evolutionarily conserved, making this species a powerful model for studying human development, cancer, neurobiology, and immune regulation. To assemble the Drosophila secretome, we systematically analyzed all fly protein sequences with computational tools, integrating FlyBase, UniProt and Gene Ontology annotations, and incorporating large-scale proteomics datasets. We identified 4,831 genes encoding putative secreted proteins, assigned confidence scores based on the type and strength of supporting evidence, and generated an online resource (www.flyrnai.org/apps/fly_secretome/) for exploring these data. Comparison with the human secretome shows that 54% of Drosophila secretome genes are conserved in the human genome and of these, 83% are annotated as secreted in human. In addition, comparison with Drosophila single-cell transcriptomic data revealed that secreted proteins are more tissue-specific than other genes. Finally, we demonstrate the utility of this resource by analyzing changes in expression of genes encoding putative secreted proteins during aging based on snRNA-seq datasets from the Aging Fly Cell Atlas.
Preprint server:
bioRxiv
The authors list and abstract were imported from bioRxiv on 28 Aug 2026.
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