DataBiNS: Data Mining Tool for Biological Pathways and Non-Synonymous SNPs. Song, Y., Kawas, E., Good, B., Wilkinson, M., & Tebbutt, S. Bioinformatics, 23(6):780-782, 1, 2007.
DataBiNS: Data Mining Tool for Biological Pathways and Non-Synonymous SNPs. [link]Website  abstract   bibtex   
DataBiNS is a custom-designed BioMOBY Web Service workflow that integrates non-synonymous coding single nucleotide polymorphisms (nsSNPs) data with structure/function and pathway data for the relevant protein. A KEGG Pathway Identifier representing a specific human biological pathway initializes the DataBiNS workflow. The workflow retrieves a list of publications, gene ontology annotations, and nsSNP information for each gene involved in the biological pathway. Manual inspection of output data from several trial runs confirms that all expected information is appropriately retrieved by the workflow Services. The use of an automated BioMOBY workflow, rather than manual ``surfing'', to retrieve the necessary data, significantly reduces the effort required for functional interpretation of SNP data, and thus encourages more speculative investigation. Moreover, the modular nature of the individual BioMOBY Services enables fine-grained reusing of each Service in other workflows, thus reducing the effort required to achieve similar investigations in the future. AVAILABILITY: The workflow is freely available as a Taverna SCUFL XML document at the iCAPTURE Centre web site, http://www.mrl.ubc.ca/who/who_bios_scott_tebbutt.shtml.
@article{
 title = {DataBiNS: Data Mining Tool for Biological Pathways and Non-Synonymous SNPs.},
 type = {article},
 year = {2007},
 keywords = {snp},
 pages = {780-782},
 volume = {23},
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 abstract = {DataBiNS is a custom-designed BioMOBY Web Service workflow that integrates non-synonymous coding single nucleotide polymorphisms (nsSNPs) data with structure/function and pathway data for the relevant protein. A KEGG Pathway Identifier representing a specific human biological pathway initializes the DataBiNS workflow. The workflow retrieves a list of publications, gene ontology annotations, and nsSNP information for each gene involved in the biological pathway. Manual inspection of output data from several trial runs confirms that all expected information is appropriately retrieved by the workflow Services. The use of an automated BioMOBY workflow, rather than manual ``surfing'', to retrieve the necessary data, significantly reduces the effort required for functional interpretation of SNP data, and thus encourages more speculative investigation. Moreover, the modular nature of the individual BioMOBY Services enables fine-grained reusing of each Service in other workflows, thus reducing the effort required to achieve similar investigations in the future. AVAILABILITY: The workflow is freely available as a Taverna SCUFL XML document at the iCAPTURE Centre web site, http://www.mrl.ubc.ca/who/who_bios_scott_tebbutt.shtml.},
 bibtype = {article},
 author = {Song, Young and Kawas, Edward and Good, Ben and Wilkinson, Mark and Tebbutt, Scott},
 journal = {Bioinformatics},
 number = {6}
}

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