AggreProt: a web server for predicting and engineering aggregation prone regions in proteins

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This publication doesn't include Institute of Computer Science. It includes Faculty of Science. Official publication website can be found on muni.cz.
Authors

PLANAS IGLESIAS Joan BORKO Simeon SWIATKOWSKI Jan ELIAS Matej HAVLÁSEK Martin SALAMON Ondrej GRAKOVA Ekaterina KUNKA Antonín MARTINOVIC Tomas DAMBORSKÝ Jiří MARTINOVIC Jan BEDNÁŘ David

Year of publication 2024
Type Article in Periodical
Magazine / Source Nucleic Acids Research
MU Faculty or unit

Faculty of Science

Citation
web https://academic.oup.com/nar/article/52/W1/W159/7683054?login=true
Doi http://dx.doi.org/10.1093/nar/gkae420
Keywords SECONDARY STRUCTURE; BETA; DATABASE; DESIGN
Attached files
Description Recombinant proteins play pivotal roles in numerous applications including industrial biocatalysts or therapeutics. Despite the recent progress in computational protein structure prediction, protein solubility and reduced aggregation propensity remain challenging attributes to design. Identification of aggregation-prone regions is essential for understanding misfolding diseases or designing efficient protein-based technologies, and as such has a great socio-economic impact. Here, we introduce AggreProt, a user-friendly webserver that automatically exploits an ensemble of deep neural networks to predict aggregation-prone regions (APRs) in protein sequences. Trained on experimentally evaluated hexapeptides, AggreProt compares to or outperforms state-of-the-art algorithms on two independent benchmark datasets. The server provides per-residue aggregation profiles along with information on solvent accessibility and transmembrane propensity within an intuitive interface with interactive sequence and structure viewers for comprehensive analysis. We demonstrate AggreProt efficacy in predicting differential aggregation behaviours in proteins on several use cases, which emphasize its potential for guiding protein engineering strategies towards decreased aggregation propensity and improved solubility. The webserver is freely available and accessible at https://loschmidt.chemi.muni.cz/aggreprot/.
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