bioRxiv · 10.1101/2024.01.30.577933
Sequence, Structure and Functional space of Drosophila de novo proteins
Abstract
During de novo emergence, new protein coding genes emerge from previously non-genic sequences. The de novo proteins they encode are dissimilar in composition and predicted biochemical properties to conserved proteins. However, many functional de novo proteins indeed exist. Both identification of functional de novo proteins and their structural characterisation are experimentally laborious. To identify functional and structured de novo proteins in silico, we applied recently developed machine learning based tools and refined the results for de novo proteins. We found that most de novo proteins are indeed different from conserved proteins both in their structure and sequence. However, some de novo proteins are predicted to adopt known protein folds, participate in cellular reactions, and to form biomolecular condensates. Apart from broadening our understanding of de novo protein evolution, our study also provides a large set of testable hypotheses for focused experimental studies on structure and function of de novo proteins in Drosophila.
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Middendorf, L., Ravi Iyengar, B., Eicholt, L. A.. 2024-02-01. Sequence, Structure and Functional space of Drosophila de novo proteins. https://doi.org/10.1101/2024.01.30.577933
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