首页 正文

PloS one. 2009;4(4):e5225. doi: 10.1371/journal.pone.0005225 Q22.62025

Supplementing high-density SNP microarrays for additional coverage of disease-related genes: addiction as a paradigm

补充高密度SNP微阵列以增加与疾病相关基因的覆盖范围:以成瘾为例 翻译改进

Scott F Saccone  1, Laura J Bierut, Elissa J Chesler, Peter W Kalivas, Caryn Lerman, Nancy L Saccone, George R Uhl, Chuan-Yun Li, Vivek M Philip, Howard J Edenberg, Stephen T Sherry, Michael Feolo, Robert K Moyzis, Joni L Rutter

作者单位 +展开

作者单位

  • 1 Department of Psychiatry, Washington University School of Medicine, St Louis, MO, USA. ssaccone@wustl.edu
  • DOI: 10.1371/journal.pone.0005225 PMID: 19381300

    摘要 Ai翻译

    Commercial SNP microarrays now provide comprehensive and affordable coverage of the human genome. However, some diseases have biologically relevant genomic regions that may require additional coverage. Addiction, for example, is thought to be influenced by complex interactions among many relevant genes and pathways. We have assembled a list of 486 biologically relevant genes nominated by a panel of experts on addiction. We then added 424 genes that showed evidence of association with addiction phenotypes through mouse QTL mappings and gene co-expression analysis. We demonstrate that there are a substantial number of SNPs in these genes that are not well represented by commercial SNP platforms. We address this problem by introducing a publicly available SNP database for addiction. The database is annotated using numeric prioritization scores indicating the extent of biological relevance. The scores incorporate a number of factors such as SNP/gene functional properties (including synonymy and promoter regions), data from mouse systems genetics and measures of human/mouse evolutionary conservation. We then used HapMap genotyping data to determine if a SNP is tagged by a commercial microarray through linkage disequilibrium. This combination of biological prioritization scores and LD tagging annotation will enable addiction researchers to supplement commercial SNP microarrays to ensure comprehensive coverage of biologically relevant regions.

    Keywords:high-density SNP microarrays; disease-related genes; addiction

    Copyright © PloS one. 中文内容为AI机器翻译,仅供参考!

    相关内容

    期刊名:Plos one

    缩写:PLOS ONE

    ISSN:1932-6203

    e-ISSN:1932-6203

    IF/分区:2.6/Q2

    文章目录 更多期刊信息

    全文链接
    引文链接
    复制
    已复制!
    推荐内容
    Supplementing high-density SNP microarrays for additional coverage of disease-related genes: addiction as a paradigm