Single Nucleotide Polymorphisms in SelectedApoptotic Genes and BPDE-Induced Apoptotic Capacityin Apparently Normal Primary Lymphocytes:A Genotype-Phenotype Correlation Analysis
[摘要] Apoptotic capacity (AC) in primary lymphocytes may be a marker for cancer susceptibility, and functional single nucleotide polymorphisms (SNPs) in genes involved in apoptotic pathways may modulate cellular AC in response to DNA damage. To further examine the correlation between apoptotic genotypes and phenotype, we genotyped 14 published SNPs in 11 apoptosis-related genes (i.e.,p53, Bcl-2, BAX, CASP9, DR4, Fas, FasL, CASP8, CASP10, CASP3, andCASP7) and assessed the AC in response to benzo[a]pyrene-7,8-9,10-diol epoxide (BPDE) in cultured primary lymphocytes from 172 cancer-free subjects. We found that among these 14 SNPs, R72P, intron 3 16-bp del/ins, and intron 6 G>A inp53, −938C>A inBcl-2, and I522L inCASP10were significant predictors of the BPDE-induced lymphocytic AC in single-locus analysis. In the combined analysis of the threep53variants, we found that the individuals with the diplotypes carrying 0-1 copy of the commonp53R-del-G haplotype had higher AC values compared to other genotypes. Although the study size may not have the statistical power to detect the role of other SNPs in AC, our findings suggest that some SNPs in genes involved in the intrinsic apoptotic pathway may modulate lymphocytic AC in response to BPDE exposure in the general population. Larger studies are needed to validate these findings for further studying individual susceptibility to cancer and other apoptosis-related diseases.
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[效力级别] [学科分类] 流行病学
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