02232nas a2200325 4500008004100000022001400041245010200055210006900157260001300226300001100239490000700250520119100257653002301448653001101471653001301482653002701495653001401522653003601536653002501572653001301597100002001610700002101630700001801651700002801669700001801697700002001715700002301735700002301758856012501781 2012 eng d a1362-496200aSNPeffect 4.0: on-line prediction of molecular and structural effects of protein-coding variants.0 aSNPeffect 40 online prediction of molecular and structural effec c2012 Jan aD935-90 v403 a
Single nucleotide variants (SNVs) are, together with copy number variation, the primary source of variation in the human genome and are associated with phenotypic variation such as altered response to drug treatment and susceptibility to disease. Linking structural effects of non-synonymous SNVs to functional outcomes is a major issue in structural bioinformatics. The SNPeffect database (http://snpeffect.switchlab.org) uses sequence- and structure-based bioinformatics tools to predict the effect of protein-coding SNVs on the structural phenotype of proteins. It integrates aggregation prediction (TANGO), amyloid prediction (WALTZ), chaperone-binding prediction (LIMBO) and protein stability analysis (FoldX) for structural phenotyping. Additionally, SNPeffect holds information on affected catalytic sites and a number of post-translational modifications. The database contains all known human protein variants from UniProt, but users can now also submit custom protein variants for a SNPeffect analysis, including automated structure modeling. The new meta-analysis application allows plotting correlations between phenotypic features for a user-selected set of variants.
10aDatabases, Protein10aHumans10aInternet10aMeta-Analysis as Topic10aPhenotype10aPolymorphism, Single Nucleotide10aProtein Conformation10aProteins1 aDe Baets, Greet1 aVan Durme, Joost1 aReumers, Joke1 aMaurer-Stroh, Sebastian1 aVanhee, Peter1 aDopazo, Joaquin1 aSchymkowitz, Joost1 aRousseau, Frederic uhttps://clinbioinfosspa.es/content/snpeffect-40-line-prediction-molecular-and-structural-effects-protein-coding-variants