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首页> 外文期刊>Blood: The Journal of the American Society of Hematology >Genetic variation in the folate metabolic pathway and risk of childhood leukemia.
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Genetic variation in the folate metabolic pathway and risk of childhood leukemia.

机译:叶酸代谢途径的遗传变异和儿童白血病的风险。

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Studies of childhood leukemia and the potential etiologic role of genetic variation in folate metabolism have produced conflicting findings and have often been based on small numbers. We investigated the association between polymorphisms in key folate metabolism enzymes (MTHFR 677 C>T, MTHFR 1298 A>C, SHMT1 1420 C>T, MTR 2756 A>G, TS 1494del6, and TS 28bp repeat) in 939 cases of childhood acute lymphoblastic leukemia (ALL) and 89 cases of acute myeloid leukemia (AML) recruited into the United Kingdom Childhood Cancer Study. We also examined the maternal genotypes of 752 of these cases. Data from 824 noncancer controls recruited were used for comparison. No evidence of an association with MTHFR 677 was observed for ALL or AML, either in children or their mothers. However, in children an increased risk of ALL (odds ratio [OR] = 1.88; 95% confidence interval [CI], 1.16-3.07; P = .010) and AML (OR = 2.74; 95% CI, 1.07-7.01; P = .036) was observed with the MTR 2756 GG genotype; the association was most pronounced for cases with the MLL translocation (OR = 4.90; 95% CI, 1.30-18.45; P = .019). These data suggest that genetic variation in methionine synthase could mediate risk of childhood leukemia, either via effects on DNA methylation or via effects on fetal growth and development.
机译:对儿童白血病的研究以及遗传变异在叶酸代谢中的潜在病因作用的研究得出了相互矛盾的发现,并且通常基于少量研究。我们调查了939例儿童急性期叶酸代谢关键酶(MTHFR 677 C> T,MTHFR 1298 A> C,SHMT1 1420 C> T,MTR 2756 A> G,TS 1494del6和TS 28bp重复)之间的多态性之间的关联。纳入英国儿童癌症研究的淋巴母细胞性白血病(ALL)和89例急性髓性白血病(AML)。我们还检查了这些病例中752个的母亲基因型。使用来自824名非癌症对照的数据进行比较。在儿童或其母亲中,未观察到ALL或AML与MTHFR 677有关联的证据。但是,儿童患ALL的风险增加(比值[OR] = 1.88; 95%置信区间[CI],1.16-3.07; P = .010)和AML(OR = 2.74; 95%CI,1.07-7.01; MTR 2756 GG基因型观察到P = .036);对于MLL易位的病例,这种关联最为明显(OR = 4.90; 95%CI,1.30-18.45; P = .019)。这些数据表明,蛋氨酸合酶的遗传变异可以通过影响DNA甲基化或通过影响胎儿生长发育来介导儿童白血病的风险。

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