Konnektor: A framework for using graph theory to plan networks for free energy calculations Journal Article


Authors: Ries, B.; Gowers, R. J.; Baumann, H. M.; Swenson, D. W. H.; Henry, M. M.; Eastwood, J. R. B.; Alibay, I.; Mobley, D.
Article Title: Konnektor: A framework for using graph theory to plan networks for free energy calculations
Abstract: Alchemical free energy campaigns can be planned using graph theory by building networks that contain nodes representing molecules that are connected by possible transformations as edges. We introduce Konnektor, an open-source Python package, for systematically planning, modifying, and analyzing free energy calculation networks. Konnektor is designed to aid in the drug discovery process by enabling users to easily setup free energy campaigns using complex graph manipulation methods. The package contains functions for network operations including concatenation of networks, deletion of transformations, and clustering of molecules along with a framework for combining these tools with existing network generation algorithms to enable the development of more complex methods for network generation. A comparison of the various network layout features offered is carried out using toy data sets. Additionally, Konnektor contains visualization and analysis tools, making the investigation of network features much simpler. Besides the content of the package, the paper also offers application examples, demonstrating how Konnektor can be used and how the different networks perform from a graph theory perspective. Konnektor is freely available via GitHub at https://github.com/OpenFreeEnergy/konnektor under the permissive MIT License.
Keywords: drug discovery; binding affinities; perturbation; accurate; reliable prediction
Journal Title: Journal of Chemical Information and Modeling
Volume: 64
Issue: 22
ISSN: 1549-9596
Publisher: American Chemical Society  
Date Published: 2024-11-25
Start Page: 8396
End Page: 8403
Language: English
ACCESSION: WOS:001349030500001
DOI: 10.1021/acs.jcim.4c01710
PROVIDER: wos
PUBMED: 39501568
PMCID: PMC11812579
Notes: Article -- Source: Wos
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  1. Mike Henry
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