Zobrazeno 1 - 10
of 38
pro vyhledávání: '"Carol A. Fulcher"'
Autor:
Markus Krummenacker, Wai Kit Ong, Mario Latendresse, Peter D. Karp, Anamika Kothari, Pallavi Subhraveti, Carol A. Fulcher, Quang Ong, Peter E. Midford, Richard Billington, Ingrid M. Keseler, Ron Caspi, Suzanne M. Paley
Publikováno v:
Nucleic Acids Research
MetaCyc (https://MetaCyc.org) is a comprehensive reference database of metabolic pathways and enzymes from all domains of life. It contains more than 2570 pathways derived from >54 000 publications, making it the largest curated collection of metabol
Autor:
Wai Kit Ong, Pallavi Subhraveti, Markus Krummenacker, Peter D. Karp, Suzanne M. Paley, Peter E. Midford, Quang Ong, Carol A. Fulcher, Ingrid M. Keseler, Mario Latendresse, Ron Caspi, Richard Billington, Anamika Kothari
Publikováno v:
Briefings in Bioinformatics. 20:1085-1093
BioCyc.org is a microbial genome Web portal that combines thousands of genomes with additional information inferred by computer programs, imported from other databases and curated from the biomedical literature by biologist curators. BioCyc also prov
Autor:
Peter D. Karp, Ingrid M. Keseler, Markus Krummenacker, Ron Caspi, Anamika Kothari, Pallavi Subhraveti, Peter E. Midford, Carol A. Fulcher, Wai Kit Ong, Richard A. Billington, Suzanne M. Paley, Mario Latendresse
Publikováno v:
The FASEB Journal. 33
Autor:
David A. Velázquez-Ramírez, Ron Caspi, César Bonavides-Martínez, Suzanne M. Paley, Daniel Weaver, Peter D. Karp, Markus Krummenacker, Julio Collado-Vides, Luis Muñiz-Rascado, Anamika Kothari, Alberto Santos-Zavaleta, Carol A. Fulcher, Richard Billington, Quang Ong, Martín Peralta-Gil, Mario Latendresse, Socorro Gama-Castro, Ian T. Paulsen, Amanda Mackie, Pallavi Subhraveti, Ingrid M. Keseler
Publikováno v:
Nucleic Acids Research
EcoCyc (EcoCyc.org) is a freely accessible, comprehensive database that collects and summarizes experimental data for Escherichia coli K-12, the best-studied bacterial model organism. New experimental discoveries about gene products, their function a
Autor:
Ron Caspi, Tomer Altman, Richard Billington, Kate Dreher, Hartmut Foerster, Carol A. Fulcher, Timothy A. Holland, Ingrid M. Keseler, Anamika Kothari, Aya Kubo, Markus Krummenacker, Mario Latendresse, Lukas A. Mueller, Quang Ong, Suzanne Paley, Pallavi Subhraveti, Daniel S. Weaver, Deepika Weerasinghe, Peifen Zhang, Peter D. Karp
Publikováno v:
Nucleic Acids Research
The MetaCyc database (MetaCyc.org) is a comprehensive and freely accessible database describing metabolic pathways and enzymes from all domains of life. MetaCyc pathways are experimentally determined, mostly small-molecule metabolic pathways and are
Autor:
Ingrid M. Keseler, Lukas A. Mueller, Ron Caspi, Luciana Ferrer, Peter D. Karp, Mario Latendresse, Markus Krummenacker, Anamika Kothari, Carol A. Fulcher, Daniel Weaver, Richard Billington, Suzanne M. Paley, Hartmut Foerster, Quang Ong, Pallavi Subhraveti
Publikováno v:
CONICET Digital (CONICET)
Consejo Nacional de Investigaciones Científicas y Técnicas
instacron:CONICET
Nucleic Acids Research
Consejo Nacional de Investigaciones Científicas y Técnicas
instacron:CONICET
Nucleic Acids Research
The MetaCyc database (MetaCyc.org) is a freely accessible comprehensive database describing metabolic pathways and enzymes from all domains of life. The majority of MetaCyc pathways are small-molecule metabolic pathways that have been experimentally
Externí odkaz:
https://explore.openaire.eu/search/publication?articleId=doi_dedup___::65856f961fd5283d98f68df7513604cb
Autor:
John Pick, Markus Krummenacker, Suzanne M. Paley, Seung Y. Rhee, Rebecca Hopkinson, Peifen Zhang, Ron Caspi, Hartmut Foerster, Peter D. Karp, Carol A. Fulcher, Pallavi Kaipa, Christophe Tissier, John L. Ingraham
Publikováno v:
Nucleic Acids Research
MetaCyc is a database of metabolic pathways and enzymes located at http://MetaCyc.org/. Its goal is to serve as a metabolic encyclopedia, containing a collection of non-redundant pathways central to small molecule metabolism, which have been reported
Autor:
Aya Kubo, César Bonavides-Martínez, Suzanne M. Paley, Socorro Gama-Castro, Peter D. Karp, Anamika Kothari, Verena Weiss, Ingrid M. Keseler, Ian T. Paulsen, Deepika Weerasinghe, Luis Muñiz-Rascado, Martín Peralta-Gil, Markus Krummenacker, Daniel Weaver, Araceli M. Huerta, Alberto Santos-Zavaleta, Imke Schröder, Robert P. Gunsalus, Amanda Mackie, Julio Collado-Vides, Carol A. Fulcher, Pallavi Subhraveti
Publikováno v:
EcoSal Plus. 6
EcoCyc is a bioinformatics database available at EcoCyc.org that describes the genome and the biochemical machinery of Escherichia coli K-12 MG1655. The long-term goal of the project is to describe the complete molecular catalog of the E. coli cell,
Autor:
Julio Collado-Vides, Peter D. Karp, Socorro Gama-Castro, Markus Krummenacker, Luis Muñiz-Rascado, Anamika Kothari, César Bonavides-Martínez, Verena Weiss, Alberto Santos-Zavaleta, Ingrid M. Keseler, Deepika Weerasinghe, Suzanne M. Paley, Carol A. Fulcher, Ian T. Paulsen, Michael Travers, Robert P. Gunsalus, Quang Ong, Amanda Mackie, Martín Peralta-Gil, Pallavi Subhraveti, Araceli M. Huerta, Imke Schröder, Alexander G. Shearer, Mario Latendresse
Publikováno v:
Nucleic acids research, vol 41, iss Database issue
Nucleic Acids Research
Nucleic Acids Research
EcoCyc (http://EcoCyc.org) is a model organism database built on the genome sequence of Escherichia coli K-12 MG1655. Expert manual curation of the functions of individual E. coli gene products in EcoCyc has been based on information found in the exp
Externí odkaz:
https://explore.openaire.eu/search/publication?articleId=doi_dedup___::57bc1804cfe58a093f5c22b96437cb25
https://escholarship.org/uc/item/0z55r8gp
https://escholarship.org/uc/item/0z55r8gp
Autor:
Ron Caspi, Tomer Altman, Joseph M. Dale, Kate Dreher, Carol A. Fulcher, Fred Gilham, Pallavi Kaipa, Athikkattuvalasu S. Karthikeyan, Anamika Kothari, Markus Krummenacker, Mario Latendresse, Lukas A. Mueller, Suzanne Paley, Liviu Popescu, Anuradha Pujar, Alexander G. Shearer, Peifen Zhang, Peter D. Karp
Publikováno v:
Nucleic Acids Research
The MetaCyc database (http://metacyc.org/) provides a comprehensive and freely accessible resource for metabolic pathways and enzymes from all domains of life. The pathways in MetaCyc are experimentally determined, small-molecule metabolic pathways a