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首页> 外文期刊>Molecular genetics and metabolism >Maternal-fetal metabolic gene-gene interactions and risk of neural tube defects.
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Maternal-fetal metabolic gene-gene interactions and risk of neural tube defects.

机译:母体代谢基因 - 基因相互作用与神经管缺陷的风险。

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Single-gene analyses indicate that maternal genes associated with metabolic conditions (e.g., obesity) may influence the risk of neural tube defects (NTDs). However, to our knowledge, there have been no assessments of maternal-fetal metabolic gene-gene interactions and NTDs. We investigated 23 single nucleotide polymorphisms among 7 maternal metabolic genes (ADRB3, ENPP1, FTO, LEP, PPARG, PPARGC1A, and TCF7L2) and 2 fetal metabolic genes (SLC2A2 and UCP2). Samples were obtained from 737 NTD case-parent triads included in the National Birth Defects Prevention Study for birth years 1999-2007. We used a 2-step approach to evaluate maternal-fetal gene-gene interactions. First, a case-only approach was applied to screen all potential maternal and fetal interactions (n = 76), as this design provides greater power in the assessment of gene-gene interactions compared to other approaches. Specifically, ordinal logistic regression was used to calculate the odds ratio (OR) and 95% confidence interval (CI) for each maternal-fetal gene-gene interaction, assuming a log-additive model of inheritance. Due to the number of comparisons, we calculated a corrected p-value (q-value) using the false discovery rate. Second, we confirmed all statistically significant interactions (q < 0.05) using a log-linear approach among case-parent triads. In step 1, there were 5 maternal-fetal gene-gene interactions with q < 0.05. The "top hit" was an interaction between maternal ENPP1 rs1044498 and fetal SLC2A2 rs6785233 (interaction OR = 3.65, 95% CI: 2.32-5.74, p = 2.09×10(-8), q=0.001), which was confirmed in step 2 (p = 0.00004). Our findings suggest that maternal metabolic genes associated with hyperglycemia and insulin resistance and fetal metabolic genes involved in glucose homeostasis may interact to increase the risk of NTDs.
机译:单基因分析表明与代谢条件相关的母体基因(例如,肥胖症)可能影响神经管缺陷(NTD)的风险。然而,为了我们的知识,没有评估母亲胎儿代谢基因相互作用和NTD。我们研究了7种母体代谢基因(ADRB3,ENPP1,FTO,LEP,PPARG,PPARGC1A和TCF7L2)和2个胎儿代谢基因(SLC2A2和UCP2)之间的23种单核苷酸多态性。从1999 - 2007年出生年份的国家出生缺陷预防研究中包含的737例NTD病例 - 母儿三联人获得样品。我们使用了一项2步方法来评估母体胎基因 - 基因相互作用。首先,施加仅案例的方法以筛选所有潜在的母体和胎儿相互作用(n = 76),因为与其他方法相比,该设计提供了对基因基因相互作用的评估。具体地,假设遗传的日志添加剂模型,使用序数逻辑回归来计算每个母体胎儿基因 - 基因相互作用的大量比率(或)和95%置信区间(CI)。由于比较次数,我们使用假发现速率计算了校正的p值(q值)。其次,我们在病例 - 父子三合会之间使用了对数线性方法确认了所有统计上显着的相互作用(Q <0.05)。在步骤1中,有5种母体胎基因基因与Q <0.05的相互作用。 “顶部命中”是母体ENPP1 RS1044498和胎儿SLC2A2 RS6785233之间的相互作用(相互作用或= 3.65,95%CI:2.32-5.74,P = 2.09×10(-8),Q = 0.001),这在步骤中确认2(p = 0.00004)。我们的研究结果表明,与高血糖和胰岛素抵抗的母体代谢基因和参与葡萄糖稳态的胎儿代谢基因可能相互作用以增加NTD的风险。

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