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首页> 外文期刊>Birth defects research, Part A. Clinical and molecular teratology >Risk factors for neural tube defects: associations between uncoupling protein 2 polymorphisms and spina bifida.
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Risk factors for neural tube defects: associations between uncoupling protein 2 polymorphisms and spina bifida.

机译:神经管缺陷的危险因素:解偶联蛋白2多态性和脊柱裂之间的关联。

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BACKGROUND: Polymorphisms in the mitochondrial membrane transporter gene UCP2 are capable of affecting energy metabolism, body weight regulation, and possibly preventing the buildup of reactive oxygen species, all factors that could contribute to neural tube defect risk through maternal obesity and diabetes. METHODS: Genomic DNA was extracted from newborn screening blood spots obtained from infants with spina bifida and nonmalformed control infants. Genotype frequencies of two genetic variants in the UCP2 gene, an amino acid substitution of valine for alanine at codon 55 in exon 4, and a 45-base pair insertion/deletion in the 3' untranslated region of exon 8,were determined by restriction enzyme digestion of PCR amplification products. RESULTS: We found the frequency of the 3' untranslated region deletion homozygous genotype (256/256) as well as the A55V homozygous (Val/Val) genotype to be higher in SB infants than in controls (odds ratio [OR], 3.1; 95% confidence interval [CI], 0.9-10.4 and OR = 2.0; 95% CI = 0.3-11.1, respectively). Additionally, the frequency of the combined homozygous 256/256,+ / + genotype was higher in cases and resulted in more than a threefold higher spina bifida risk (OR = 3.6; 95% CI = 1.0-13.1). CONCLUSIONS: These data are the first to suggest that polymorphisms in the UCP2 gene may be genetic risk factors of spina bifida.
机译:背景:线粒体膜转运蛋白基因UCP2的多态性能够影响能量代谢,调节体重,并可能防止活性氧的积累,所有这些因素都可能通过孕产妇肥胖和糖尿病导致神经管缺陷风险。方法:从新生儿脊柱裂婴儿和非畸形对照婴儿的血液筛查中提取基因组DNA。通过限制酶测定UCP2基因中两个遗传变异的基因型频率,外显子4的55位密码子上缬氨酸被缬氨酸取代,以及外显子8的3'非翻译区中45个碱基对的插入/缺失。 PCR扩增产物的消化。结果:我们发现SB婴儿3'非翻译区缺失纯合基因型(256/256)和A55V纯合(Val / Val)基因型的频率高于对照组(比值比[OR],3.1; 95%置信区间[CI],0.9-10.4和OR = 2.0; 95%CI = 0.3-11.1)。此外,合并的纯合子256/256,+ / +基因型的频率在某些情况下更高,导致脊柱裂风险增加三倍以上(OR = 3.6; 95%CI = 1.0-13.1)。结论:这些数据是第一个表明UCP2基因多态性可能是脊柱裂的遗传危险因素。

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