| Literature DB >> 16671833 |
Kristjana Einarsdóttir1, Keith Humphreys, Carine Bonnard, Juni Palmgren, Mark M Iles, Arvid Sjölander, Yuqing Li, Kee Seng Chia, Edison T Liu, Per Hall, Jianjun Liu, Sara Wedrén.
Abstract
BACKGROUND: Checkpoint kinase 2 (CHEK2) averts cancer development by promoting cell cycle arrest and activating DNA repair in genetically damaged cells. Previous investigation has established a role for the CHEK2 gene in breast cancer aetiology, but studies have largely been limited to the rare 1100delC mutation. Whether common polymorphisms in this gene influence breast cancer risk remains unknown. In this study, we aimed to assess the importance of common CHEK2 variants on population risk for breast cancer by capturing the majority of diversity in the gene using haplotype tagging single nucleotide polymorphisms (tagSNPs). METHODS ANDEntities:
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Year: 2006 PMID: 16671833 PMCID: PMC1457009 DOI: 10.1371/journal.pmed.0030168
Source DB: PubMed Journal: PLoS Med ISSN: 1549-1277 Impact factor: 11.069
Selected Characteristics of the Postmenopausal Sporadic Breast Cancer Cases and Controls Participating in the Present Study Compared to All Who Answered the Questionnaire in the Parent Study
Figure 1Exon, SNP, and LD Information for CHEK2
Lane 1 (Chr): Physical position on chromosome 22. Lane 2 (CHEK2): Exon locations. Lane 3 (dbSNP): SNPs downloaded from dbSNP build 124. Lane 4 (Genotyped): SNPs genotyped in our study and their respective frequencies in 92 controls. Accession numbers are given for the 14 common SNPs (MAF ≥ 0.03) that were in HWE, tagSNPs are marked with asterisks. LD grid: pairwise D′ between the 14 common SNPs.
Summary Data on 34 SNPs in CHEK2 and Its 5-kb Flanking Sequences Successfully Genotyped in 92 Swedish Controls
Common Haplotypes Reconstructed Using 14 SNPs in CHEK2
Common Haplotypes Reconstructed Using Six tagSNP in CHEK2 in Relation to Breast Cancer Risk
Overall Association of the CHEK2* 1100delC Mutation with Breast Cancer Risk