Registry

48 results found.

   UM-BBD Pathway   [Namespace: umbbd.pathway]  
The University of Minnesota Biocatalysis/Biodegradation Database (UM-BBD) contains information on microbial biocatalytic reactions and biodegradation ...
The University of Minnesota Biocatalysis/Biodegradation Database (UM-BBD) contains information on microbial biocatalytic reactions and biodegradation pathways for primarily xenobiotic, chemical compounds. The goal of the UM-BBD is to provide information on microbial enzyme-catalyzed reactions that are important for biotechnology. This collection refers to pathway information.

Synonyms: University of Minnesota Biocatalysis/Biodegradation Database (Pathway)
URI: http://identifiers.org/umbbd.pathway
Identifier pattern: ^\w+$
Example: http://identifiers.org/umbbd.pathway:ala
   Biocatalysis/Biodegradation Database Mirror (Pathway) at ETH Zurich  
The University of Minnesota Biocatalysis/Biodegradation Database (UM-BBD) contains information on microbial biocatalytic reactions and biodegradation ...
The University of Minnesota Biocatalysis/Biodegradation Database (UM-BBD) contains information on microbial biocatalytic reactions and biodegradation pathways for primarily xenobiotic, chemical compounds. The goal of the UM-BBD is to provide information on microbial enzyme-catalyzed reactions that are important for biotechnology. This collection refers to pathway information.

Home: http://umbbd.ethz.ch/
Institution: ETH, Zurich
Location: Switzerland
Example: http://identifiers.org/umbbd.pathway:ala
Uptime: 100%
   UM-BBD Reaction   [Namespace: umbbd.reaction]  
The University of Minnesota Biocatalysis/Biodegradation Database (UM-BBD) contains information on microbial biocatalytic reactions and biodegradation ...
The University of Minnesota Biocatalysis/Biodegradation Database (UM-BBD) contains information on microbial biocatalytic reactions and biodegradation pathways for primarily xenobiotic, chemical compounds. The goal of the UM-BBD is to provide information on microbial enzyme-catalyzed reactions that are important for biotechnology. This collection refers to reaction information.

Synonyms: University of Minnesota Biocatalysis/Biodegradation Database (Reaction)
URI: http://identifiers.org/umbbd.reaction
Identifier pattern: ^r\d+$
Example: http://identifiers.org/umbbd.reaction:r0001
   Biocatalysis/Biodegradation Database Mirror (Reaction) at ETH Zurich  
The University of Minnesota Biocatalysis/Biodegradation Database (UM-BBD) contains information on microbial biocatalytic reactions and biodegradation ...
The University of Minnesota Biocatalysis/Biodegradation Database (UM-BBD) contains information on microbial biocatalytic reactions and biodegradation pathways for primarily xenobiotic, chemical compounds. The goal of the UM-BBD is to provide information on microbial enzyme-catalyzed reactions that are important for biotechnology. This collection refers to reaction information.

Home: http://umbbd.ethz.ch/
Institution: ETH, Zurich
Location: Switzerland
Example: http://identifiers.org/umbbd.reaction:r0001
Uptime: 100%
   Rhea   [Namespace: rhea]  
Rhea is a manually annotated reaction database, where all reaction participants (reactants and products) are linked to the ChEBI database (Chemical En...
Rhea is a manually annotated reaction database, where all reaction participants (reactants and products) are linked to the ChEBI database (Chemical Entities of Biological Interest), providing detailed information about structure, formulae and charge. It is populated with the reactions found in the EC list, IntEnz and ENZYME databases), as well as other biochemical reactions, including those that are often termed "spontaneous".

URI: http://identifiers.org/rhea
Identifier pattern: ^\d{5}$
Example: http://identifiers.org/rhea:12345
   Rhea  
Rhea is a manually annotated reaction database, where all reaction participants (reactants and products) are linked to the ChEBI database (Chemical En...
Rhea is a manually annotated reaction database, where all reaction participants (reactants and products) are linked to the ChEBI database (Chemical Entities of Biological Interest), providing detailed information about structure, formulae and charge. It is populated with the reactions found in the EC list, IntEnz and ENZYME databases), as well as other biochemical reactions, including those that are often termed "spontaneous".

Primary: true
Home: http://www.rhea-db.org/
Institution: European Bioinformatics Institute and Swiss Institute of Bioinformatics
Location: UK
Example: http://identifiers.org/rhea:12345
Uptime: 99%
   UM-BBD Compound   [Namespace: umbbd.compound]  
The University of Minnesota Biocatalysis/Biodegradation Database (UM-BBD) contains information on microbial biocatalytic reactions and biodegradation ...
The University of Minnesota Biocatalysis/Biodegradation Database (UM-BBD) contains information on microbial biocatalytic reactions and biodegradation pathways for primarily xenobiotic, chemical compounds. The goal of the UM-BBD is to provide information on microbial enzyme-catalyzed reactions that are important for biotechnology. This collection refers to compound information.

Synonyms: University of Minnesota Biocatalysis/Biodegradation Database (Compound)
URI: http://identifiers.org/umbbd.compound
Identifier pattern: ^c\d+$
Example: http://identifiers.org/umbbd.compound:c0001
   Biocatalysis/Biodegradation Database Mirror (Compound) at ETH Zurich  
The University of Minnesota Biocatalysis/Biodegradation Database (UM-BBD) contains information on microbial biocatalytic reactions and biodegradation ...
The University of Minnesota Biocatalysis/Biodegradation Database (UM-BBD) contains information on microbial biocatalytic reactions and biodegradation pathways for primarily xenobiotic, chemical compounds. The goal of the UM-BBD is to provide information on microbial enzyme-catalyzed reactions that are important for biotechnology. This collection refers to compound information.

Home: http://umbbd.ethz.ch/
Institution: ETH, Zurich
Location: Switzerland
Example: http://identifiers.org/umbbd.compound:c0001
Uptime: 100%
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