Cargando…

iFeatureOmega: an integrative platform for engineering, visualization and analysis of features from molecular sequences, structural and ligand data sets

The rapid accumulation of molecular data motivates development of innovative approaches to computationally characterize sequences, structures and functions of biological and chemical molecules in an efficient, accessible and accurate manner. Notwithstanding several computational tools that character...

Descripción completa

Detalles Bibliográficos
Autores principales: Chen, Zhen, Liu, Xuhan, Zhao, Pei, Li, Chen, Wang, Yanan, Li, Fuyi, Akutsu, Tatsuya, Bain, Chris, Gasser, Robin B, Li, Junzhou, Yang, Zuoren, Gao, Xin, Kurgan, Lukasz, Song, Jiangning
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Oxford University Press 2022
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9252729/
https://www.ncbi.nlm.nih.gov/pubmed/35524557
http://dx.doi.org/10.1093/nar/gkac351
_version_ 1784740333703135232
author Chen, Zhen
Liu, Xuhan
Zhao, Pei
Li, Chen
Wang, Yanan
Li, Fuyi
Akutsu, Tatsuya
Bain, Chris
Gasser, Robin B
Li, Junzhou
Yang, Zuoren
Gao, Xin
Kurgan, Lukasz
Song, Jiangning
author_facet Chen, Zhen
Liu, Xuhan
Zhao, Pei
Li, Chen
Wang, Yanan
Li, Fuyi
Akutsu, Tatsuya
Bain, Chris
Gasser, Robin B
Li, Junzhou
Yang, Zuoren
Gao, Xin
Kurgan, Lukasz
Song, Jiangning
author_sort Chen, Zhen
collection PubMed
description The rapid accumulation of molecular data motivates development of innovative approaches to computationally characterize sequences, structures and functions of biological and chemical molecules in an efficient, accessible and accurate manner. Notwithstanding several computational tools that characterize protein or nucleic acids data, there are no one-stop computational toolkits that comprehensively characterize a wide range of biomolecules. We address this vital need by developing a holistic platform that generates features from sequence and structural data for a diverse collection of molecule types. Our freely available and easy-to-use iFeatureOmega platform generates, analyzes and visualizes 189 representations for biological sequences, structures and ligands. To the best of our knowledge, iFeatureOmega provides the largest scope when directly compared to the current solutions, in terms of the number of feature extraction and analysis approaches and coverage of different molecules. We release three versions of iFeatureOmega including a webserver, command line interface and graphical interface to satisfy needs of experienced bioinformaticians and less computer-savvy biologists and biochemists. With the assistance of iFeatureOmega, users can encode their molecular data into representations that facilitate construction of predictive models and analytical studies. We highlight benefits of iFeatureOmega based on three research applications, demonstrating how it can be used to accelerate and streamline research in bioinformatics, computational biology, and cheminformatics areas. The iFeatureOmega webserver is freely available at http://ifeatureomega.erc.monash.edu and the standalone versions can be downloaded from https://github.com/Superzchen/iFeatureOmega-GUI/ and https://github.com/Superzchen/iFeatureOmega-CLI/.
format Online
Article
Text
id pubmed-9252729
institution National Center for Biotechnology Information
language English
publishDate 2022
publisher Oxford University Press
record_format MEDLINE/PubMed
spelling pubmed-92527292022-07-05 iFeatureOmega: an integrative platform for engineering, visualization and analysis of features from molecular sequences, structural and ligand data sets Chen, Zhen Liu, Xuhan Zhao, Pei Li, Chen Wang, Yanan Li, Fuyi Akutsu, Tatsuya Bain, Chris Gasser, Robin B Li, Junzhou Yang, Zuoren Gao, Xin Kurgan, Lukasz Song, Jiangning Nucleic Acids Res Web Server Issue The rapid accumulation of molecular data motivates development of innovative approaches to computationally characterize sequences, structures and functions of biological and chemical molecules in an efficient, accessible and accurate manner. Notwithstanding several computational tools that characterize protein or nucleic acids data, there are no one-stop computational toolkits that comprehensively characterize a wide range of biomolecules. We address this vital need by developing a holistic platform that generates features from sequence and structural data for a diverse collection of molecule types. Our freely available and easy-to-use iFeatureOmega platform generates, analyzes and visualizes 189 representations for biological sequences, structures and ligands. To the best of our knowledge, iFeatureOmega provides the largest scope when directly compared to the current solutions, in terms of the number of feature extraction and analysis approaches and coverage of different molecules. We release three versions of iFeatureOmega including a webserver, command line interface and graphical interface to satisfy needs of experienced bioinformaticians and less computer-savvy biologists and biochemists. With the assistance of iFeatureOmega, users can encode their molecular data into representations that facilitate construction of predictive models and analytical studies. We highlight benefits of iFeatureOmega based on three research applications, demonstrating how it can be used to accelerate and streamline research in bioinformatics, computational biology, and cheminformatics areas. The iFeatureOmega webserver is freely available at http://ifeatureomega.erc.monash.edu and the standalone versions can be downloaded from https://github.com/Superzchen/iFeatureOmega-GUI/ and https://github.com/Superzchen/iFeatureOmega-CLI/. Oxford University Press 2022-05-07 /pmc/articles/PMC9252729/ /pubmed/35524557 http://dx.doi.org/10.1093/nar/gkac351 Text en © The Author(s) 2022. Published by Oxford University Press on behalf of Nucleic Acids Research. https://creativecommons.org/licenses/by/4.0/This is an Open Access article distributed under the terms of the Creative Commons Attribution License (https://creativecommons.org/licenses/by/4.0/), which permits unrestricted reuse, distribution, and reproduction in any medium, provided the original work is properly cited.
spellingShingle Web Server Issue
Chen, Zhen
Liu, Xuhan
Zhao, Pei
Li, Chen
Wang, Yanan
Li, Fuyi
Akutsu, Tatsuya
Bain, Chris
Gasser, Robin B
Li, Junzhou
Yang, Zuoren
Gao, Xin
Kurgan, Lukasz
Song, Jiangning
iFeatureOmega: an integrative platform for engineering, visualization and analysis of features from molecular sequences, structural and ligand data sets
title iFeatureOmega: an integrative platform for engineering, visualization and analysis of features from molecular sequences, structural and ligand data sets
title_full iFeatureOmega: an integrative platform for engineering, visualization and analysis of features from molecular sequences, structural and ligand data sets
title_fullStr iFeatureOmega: an integrative platform for engineering, visualization and analysis of features from molecular sequences, structural and ligand data sets
title_full_unstemmed iFeatureOmega: an integrative platform for engineering, visualization and analysis of features from molecular sequences, structural and ligand data sets
title_short iFeatureOmega: an integrative platform for engineering, visualization and analysis of features from molecular sequences, structural and ligand data sets
title_sort ifeatureomega: an integrative platform for engineering, visualization and analysis of features from molecular sequences, structural and ligand data sets
topic Web Server Issue
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9252729/
https://www.ncbi.nlm.nih.gov/pubmed/35524557
http://dx.doi.org/10.1093/nar/gkac351
work_keys_str_mv AT chenzhen ifeatureomegaanintegrativeplatformforengineeringvisualizationandanalysisoffeaturesfrommolecularsequencesstructuralandliganddatasets
AT liuxuhan ifeatureomegaanintegrativeplatformforengineeringvisualizationandanalysisoffeaturesfrommolecularsequencesstructuralandliganddatasets
AT zhaopei ifeatureomegaanintegrativeplatformforengineeringvisualizationandanalysisoffeaturesfrommolecularsequencesstructuralandliganddatasets
AT lichen ifeatureomegaanintegrativeplatformforengineeringvisualizationandanalysisoffeaturesfrommolecularsequencesstructuralandliganddatasets
AT wangyanan ifeatureomegaanintegrativeplatformforengineeringvisualizationandanalysisoffeaturesfrommolecularsequencesstructuralandliganddatasets
AT lifuyi ifeatureomegaanintegrativeplatformforengineeringvisualizationandanalysisoffeaturesfrommolecularsequencesstructuralandliganddatasets
AT akutsutatsuya ifeatureomegaanintegrativeplatformforengineeringvisualizationandanalysisoffeaturesfrommolecularsequencesstructuralandliganddatasets
AT bainchris ifeatureomegaanintegrativeplatformforengineeringvisualizationandanalysisoffeaturesfrommolecularsequencesstructuralandliganddatasets
AT gasserrobinb ifeatureomegaanintegrativeplatformforengineeringvisualizationandanalysisoffeaturesfrommolecularsequencesstructuralandliganddatasets
AT lijunzhou ifeatureomegaanintegrativeplatformforengineeringvisualizationandanalysisoffeaturesfrommolecularsequencesstructuralandliganddatasets
AT yangzuoren ifeatureomegaanintegrativeplatformforengineeringvisualizationandanalysisoffeaturesfrommolecularsequencesstructuralandliganddatasets
AT gaoxin ifeatureomegaanintegrativeplatformforengineeringvisualizationandanalysisoffeaturesfrommolecularsequencesstructuralandliganddatasets
AT kurganlukasz ifeatureomegaanintegrativeplatformforengineeringvisualizationandanalysisoffeaturesfrommolecularsequencesstructuralandliganddatasets
AT songjiangning ifeatureomegaanintegrativeplatformforengineeringvisualizationandanalysisoffeaturesfrommolecularsequencesstructuralandliganddatasets