Cargando…

How to Use SNP_TATA_Comparator to Find a Significant Change in Gene Expression Caused by the Regulatory SNP of This Gene's Promoter via a Change in Affinity of the TATA-Binding Protein for This Promoter

The use of biomedical SNP markers of diseases can improve effectiveness of treatment. Genotyping of patients with subsequent searching for SNPs more frequent than in norm is the only commonly accepted method for identification of SNP markers within the framework of translational research. The bioinf...

Descripción completa

Detalles Bibliográficos
Autores principales: Ponomarenko, Mikhail, Rasskazov, Dmitry, Arkova, Olga, Ponomarenko, Petr, Suslov, Valentin, Savinkova, Ludmila, Kolchanov, Nikolay
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Hindawi Publishing Corporation 2015
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4609514/
https://www.ncbi.nlm.nih.gov/pubmed/26516624
http://dx.doi.org/10.1155/2015/359835
_version_ 1782395828872151040
author Ponomarenko, Mikhail
Rasskazov, Dmitry
Arkova, Olga
Ponomarenko, Petr
Suslov, Valentin
Savinkova, Ludmila
Kolchanov, Nikolay
author_facet Ponomarenko, Mikhail
Rasskazov, Dmitry
Arkova, Olga
Ponomarenko, Petr
Suslov, Valentin
Savinkova, Ludmila
Kolchanov, Nikolay
author_sort Ponomarenko, Mikhail
collection PubMed
description The use of biomedical SNP markers of diseases can improve effectiveness of treatment. Genotyping of patients with subsequent searching for SNPs more frequent than in norm is the only commonly accepted method for identification of SNP markers within the framework of translational research. The bioinformatics applications aimed at millions of unannotated SNPs of the “1000 Genomes” can make this search for SNP markers more focused and less expensive. We used our Web service involving Fisher's Z-score for candidate SNP markers to find a significant change in a gene's expression. Here we analyzed the change caused by SNPs in the gene's promoter via a change in affinity of the TATA-binding protein for this promoter. We provide examples and discuss how to use this bioinformatics application in the course of practical analysis of unannotated SNPs from the “1000 Genomes” project. Using known biomedical SNP markers, we identified 17 novel candidate SNP markers nearby: rs549858786 (rheumatoid arthritis); rs72661131 (cardiovascular events in rheumatoid arthritis); rs562962093 (stroke); rs563558831 (cyclophosphamide bioactivation); rs55878706 (malaria resistance, leukopenia), rs572527200 (asthma, systemic sclerosis, and psoriasis), rs371045754 (hemophilia B), rs587745372 (cardiovascular events); rs372329931, rs200209906, rs367732974, and rs549591993 (all four: cancer); rs17231520 and rs569033466 (both: atherosclerosis); rs63750953, rs281864525, and rs34166473 (all three: malaria resistance, thalassemia).
format Online
Article
Text
id pubmed-4609514
institution National Center for Biotechnology Information
language English
publishDate 2015
publisher Hindawi Publishing Corporation
record_format MEDLINE/PubMed
spelling pubmed-46095142015-10-29 How to Use SNP_TATA_Comparator to Find a Significant Change in Gene Expression Caused by the Regulatory SNP of This Gene's Promoter via a Change in Affinity of the TATA-Binding Protein for This Promoter Ponomarenko, Mikhail Rasskazov, Dmitry Arkova, Olga Ponomarenko, Petr Suslov, Valentin Savinkova, Ludmila Kolchanov, Nikolay Biomed Res Int Research Article The use of biomedical SNP markers of diseases can improve effectiveness of treatment. Genotyping of patients with subsequent searching for SNPs more frequent than in norm is the only commonly accepted method for identification of SNP markers within the framework of translational research. The bioinformatics applications aimed at millions of unannotated SNPs of the “1000 Genomes” can make this search for SNP markers more focused and less expensive. We used our Web service involving Fisher's Z-score for candidate SNP markers to find a significant change in a gene's expression. Here we analyzed the change caused by SNPs in the gene's promoter via a change in affinity of the TATA-binding protein for this promoter. We provide examples and discuss how to use this bioinformatics application in the course of practical analysis of unannotated SNPs from the “1000 Genomes” project. Using known biomedical SNP markers, we identified 17 novel candidate SNP markers nearby: rs549858786 (rheumatoid arthritis); rs72661131 (cardiovascular events in rheumatoid arthritis); rs562962093 (stroke); rs563558831 (cyclophosphamide bioactivation); rs55878706 (malaria resistance, leukopenia), rs572527200 (asthma, systemic sclerosis, and psoriasis), rs371045754 (hemophilia B), rs587745372 (cardiovascular events); rs372329931, rs200209906, rs367732974, and rs549591993 (all four: cancer); rs17231520 and rs569033466 (both: atherosclerosis); rs63750953, rs281864525, and rs34166473 (all three: malaria resistance, thalassemia). Hindawi Publishing Corporation 2015 2015-10-04 /pmc/articles/PMC4609514/ /pubmed/26516624 http://dx.doi.org/10.1155/2015/359835 Text en Copyright © 2015 Mikhail Ponomarenko et al. https://creativecommons.org/licenses/by/3.0/ This is an open access article distributed under the Creative Commons Attribution License, which permits unrestricted use, distribution, and reproduction in any medium, provided the original work is properly cited.
spellingShingle Research Article
Ponomarenko, Mikhail
Rasskazov, Dmitry
Arkova, Olga
Ponomarenko, Petr
Suslov, Valentin
Savinkova, Ludmila
Kolchanov, Nikolay
How to Use SNP_TATA_Comparator to Find a Significant Change in Gene Expression Caused by the Regulatory SNP of This Gene's Promoter via a Change in Affinity of the TATA-Binding Protein for This Promoter
title How to Use SNP_TATA_Comparator to Find a Significant Change in Gene Expression Caused by the Regulatory SNP of This Gene's Promoter via a Change in Affinity of the TATA-Binding Protein for This Promoter
title_full How to Use SNP_TATA_Comparator to Find a Significant Change in Gene Expression Caused by the Regulatory SNP of This Gene's Promoter via a Change in Affinity of the TATA-Binding Protein for This Promoter
title_fullStr How to Use SNP_TATA_Comparator to Find a Significant Change in Gene Expression Caused by the Regulatory SNP of This Gene's Promoter via a Change in Affinity of the TATA-Binding Protein for This Promoter
title_full_unstemmed How to Use SNP_TATA_Comparator to Find a Significant Change in Gene Expression Caused by the Regulatory SNP of This Gene's Promoter via a Change in Affinity of the TATA-Binding Protein for This Promoter
title_short How to Use SNP_TATA_Comparator to Find a Significant Change in Gene Expression Caused by the Regulatory SNP of This Gene's Promoter via a Change in Affinity of the TATA-Binding Protein for This Promoter
title_sort how to use snp_tata_comparator to find a significant change in gene expression caused by the regulatory snp of this gene's promoter via a change in affinity of the tata-binding protein for this promoter
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4609514/
https://www.ncbi.nlm.nih.gov/pubmed/26516624
http://dx.doi.org/10.1155/2015/359835
work_keys_str_mv AT ponomarenkomikhail howtousesnptatacomparatortofindasignificantchangeingeneexpressioncausedbytheregulatorysnpofthisgenespromoterviaachangeinaffinityofthetatabindingproteinforthispromoter
AT rasskazovdmitry howtousesnptatacomparatortofindasignificantchangeingeneexpressioncausedbytheregulatorysnpofthisgenespromoterviaachangeinaffinityofthetatabindingproteinforthispromoter
AT arkovaolga howtousesnptatacomparatortofindasignificantchangeingeneexpressioncausedbytheregulatorysnpofthisgenespromoterviaachangeinaffinityofthetatabindingproteinforthispromoter
AT ponomarenkopetr howtousesnptatacomparatortofindasignificantchangeingeneexpressioncausedbytheregulatorysnpofthisgenespromoterviaachangeinaffinityofthetatabindingproteinforthispromoter
AT suslovvalentin howtousesnptatacomparatortofindasignificantchangeingeneexpressioncausedbytheregulatorysnpofthisgenespromoterviaachangeinaffinityofthetatabindingproteinforthispromoter
AT savinkovaludmila howtousesnptatacomparatortofindasignificantchangeingeneexpressioncausedbytheregulatorysnpofthisgenespromoterviaachangeinaffinityofthetatabindingproteinforthispromoter
AT kolchanovnikolay howtousesnptatacomparatortofindasignificantchangeingeneexpressioncausedbytheregulatorysnpofthisgenespromoterviaachangeinaffinityofthetatabindingproteinforthispromoter