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Tag: cheminformatics
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Workflow InChi key to MOL file (1)

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Returns a MOL file for a given InChi key

Created: 2010-07-09 | Last updated: 2010-07-09

Credits: User Peter Li

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Workflow InChi key to Inchi string (1)

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Converts an InChI key to an InChI string using the ChemSpider Inchi web service.

Created: 2010-07-09 | Last updated: 2010-07-09

Credits: User Peter Li

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Workflow InChi key to ChemSpider identifier (1)

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Returns Converts an InChIKey to a ChemSpider ID

Created: 2010-07-09 | Last updated: 2010-07-09

Credits: User Peter Li

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Workflow Generate InChi key (1)

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Generates an inchi key for a given compound using the inchi web service provided by ChemSpider

Created: 2010-07-09 | Last updated: 2010-07-09

Credits: User Peter Li

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Workflow Generate inChi information (1)

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Uses the GenerateInchiInfo web service operation from ChemSpider to generate information relating to the InChi string for a given chemical compound

Created: 2010-07-09 | Last updated: 2010-07-09

Credits: User Peter Li

Uploader

Workflow Generate inChi (1)

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Generates an inChi string for a given chemical represented by its SMILES string, SDF or MOL file using the inchi web service provided by ChemSpider

Created: 2010-07-09 | Last updated: 2010-07-09

Credits: User Peter Li

Creator

Pack Mapping Metabolites for Metabolic Network Reconstruc...


Created: 2010-06-03 11:43:43 | Last updated: 2010-06-03 11:47:16

The process of metabolic network reconstructions typically begins with the task of collating existing information. For metabolites this poses a relatively straight forward set of cheminformatics problems. These problems include finding identical structures across sources, which is trivial, but also structures that differ due to idiosyncrasies of the sources or annotators. This includes charge differences, varying stereochemistry, tautomers, and so forth. Workflows in this pack allow sets of ...

6 items in this pack

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Workflow M5 Charge Matching (1)

The process of metabolic network reconstructions typically begins with the task of collating existing information. For metabolites this poses a relatively straight forward set of cheminformatics problems. This workflow implements matching algorithm M5 which ionises molecules at pH 7 prior to matching, restores original structures.

Created: 2010-06-03

Credits: User Paul Dobson

Workflow M4 Tautomer Matching (1)

The process of metabolic network reconstructions typically begins with the task of collating existing information. For metabolites this poses a relatively straight forward set of cheminformatics problems. This workflow implements matching algorithm M4 which generates canonical tautomers prior to matching, matches, then restores original structures.

Created: 2010-06-03

Credits: User Paul Dobson

Workflow M3 Non-stereo Matching (1)

The process of metabolic network reconstructions typically begins with the task of collating existing information. For metabolites this poses a relatively straight forward set of cheminformatics problems. This workflow implements matching algorithm M3 which strips stereochemical information from molecules, performs exact matching, and restores stereochemistry.

Created: 2010-06-03

Credits: User Paul Dobson

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