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Foldy: An open-source web application for interactive protein structure analysis
by
Pearson, Allison N.
, Incha, Matthew R.
, Keasling, Jay D.
, Roberts, Jacob B.
, Valencia, Luis E.
, Rao, Abhay
, Nava, Alberto A.
, Ma, Melody
in
BASIC BIOLOGICAL SCIENCES
/ Biochemistry & Molecular Biology
/ Cloud computing
/ Mathematical & Computational Biology
/ MATHEMATICS AND COMPUTING
/ Molecular structure
/ Open source software
/ Protein domains
/ Protein folding
/ Protein structure
/ Protein structure prediction
/ Small molecules
2024
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Foldy: An open-source web application for interactive protein structure analysis
by
Pearson, Allison N.
, Incha, Matthew R.
, Keasling, Jay D.
, Roberts, Jacob B.
, Valencia, Luis E.
, Rao, Abhay
, Nava, Alberto A.
, Ma, Melody
in
BASIC BIOLOGICAL SCIENCES
/ Biochemistry & Molecular Biology
/ Cloud computing
/ Mathematical & Computational Biology
/ MATHEMATICS AND COMPUTING
/ Molecular structure
/ Open source software
/ Protein domains
/ Protein folding
/ Protein structure
/ Protein structure prediction
/ Small molecules
2024
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Do you wish to request the book?
Foldy: An open-source web application for interactive protein structure analysis
by
Pearson, Allison N.
, Incha, Matthew R.
, Keasling, Jay D.
, Roberts, Jacob B.
, Valencia, Luis E.
, Rao, Abhay
, Nava, Alberto A.
, Ma, Melody
in
BASIC BIOLOGICAL SCIENCES
/ Biochemistry & Molecular Biology
/ Cloud computing
/ Mathematical & Computational Biology
/ MATHEMATICS AND COMPUTING
/ Molecular structure
/ Open source software
/ Protein domains
/ Protein folding
/ Protein structure
/ Protein structure prediction
/ Small molecules
2024
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Foldy: An open-source web application for interactive protein structure analysis
Journal Article
Foldy: An open-source web application for interactive protein structure analysis
2024
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Overview
Foldy is a cloud-based application that allows non-computational biologists to easily utilize advanced AI-based structural biology tools, including AlphaFold and DiffDock. With many deployment options, it can be employed by individuals, labs, universities, and companies in the cloud without requiring hardware resources, but it can also be configured to utilize locally available computers. Foldy enables scientists to predict the structure of proteins and complexes up to 6000 amino acids with AlphaFold, visualize Pfam annotations, and dock ligands with AutoDock Vina and DiffDock. In our manuscript, we detail Foldy’s interface design, deployment strategies, and optimization for various user scenarios. We demonstrate its application through case studies including rational enzyme design and analyzing proteins with domains of unknown function. Furthermore, we compare Foldy’s interface and management capabilities with other open and closed source tools in the field, illustrating its practicality in managing complex data and computation tasks. Our manuscript underlines the benefits of Foldy as a day-to-day tool for life science researchers, and shows how Foldy can make modern tools more accessible and efficient.
Publisher
Public Library of Science
Subject
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