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Advancements in biotransformation pathway prediction: enhancements, datasets, and novel functionalities in enviPath

Hafner, Jasmin; Lorsbach, Tim; Schmidt, Sebastian; Brydon, Liam; Dost, Katharina; Zhang, Kunyang; Fenner, Kathrin; Wicker, Jörg (2024). Advancements in biotransformation pathway prediction: enhancements, datasets, and novel functionalities in enviPath. Journal of Cheminformatics, 16(1):93.

Abstract

enviPath is a widely used database and prediction system for microbial biotransformation pathways of primarily xenobiotic compounds. Data and prediction system are freely available both via a web interface and a public REST API. Since its initial release in 2016, we extended the data available in enviPath and improved the performance of the prediction system and usability of the overall system. We now provide three diverse data sets, covering microbial biotransformation in different environments and under different experimental conditions. This also enabled developing a pathway prediction model that is applicable to a more diverse set of chemicals. In the prediction engine, we implemented a new evaluation tailored towards pathway prediction, which returns a more honest and holistic view on the performance. We also implemented a novel applicability domain algorithm, which allows the user to estimate how well the model will perform on their data. Finally, we improved the implementation to speed up the overall system and provide new functionality via a plugin system.
Scientific contribution
The main scientific contributions are the development of a pathway prediction model applicable to diverse chemicals, a specialized evaluation method for holistic performance assessment, and a novel applicability domain algorithm for user-specific performance estimation. The introduction of two new data sets, and the creation of links to EC classes make enviPath a unique resource in microbial biotransformation research.

Additional indexing

Item Type:Journal Article, refereed, original work
Communities & Collections:07 Faculty of Science > Department of Chemistry
Dewey Decimal Classification:540 Chemistry
Scopus Subject Areas:Physical Sciences > Computer Science Applications
Physical Sciences > Physical and Theoretical Chemistry
Physical Sciences > Computer Graphics and Computer-Aided Design
Social Sciences & Humanities > Library and Information Sciences
Language:English
Date:6 August 2024
Deposited On:09 Feb 2025 11:16
Last Modified:10 Feb 2025 21:04
Publisher:BioMed Central
ISSN:1758-2946
OA Status:Gold
Free access at:Publisher DOI. An embargo period may apply.
Publisher DOI:https://doi.org/10.1186/s13321-024-00881-6
PubMed ID:39107805
Project Information:
  • Funder: H2020
  • Grant ID: 956496
  • Project Title: The European Industry - Academia Network for RevIsing and Advancing the Assessment of the Soil Microbial TOxicity of Pesticides
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  • Licence: Creative Commons: Attribution 4.0 International (CC BY 4.0)

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