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Evaluation of Genes Involved in Limb Development Angiogenesis and Coagulation as Risk Factors for Congenital Limb Deficiencies

机译:评估肢体发育血管生成和凝血的基因作为先天性肢体缺陷的危险因素

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摘要

We conducted a population-based case-control study of single nucleotide polymorphisms (SNPs) in selected genes to find common variants that play a role in the etiology of limb deficiencies (LD)s. Included in the study were 389 infants with LDs of unknown cause and 980 unaffected controls selected from all births in New York State (NYS) for the years 1998 to 2005. We used cases identified from the NYS Department of Health (DOH) Congenital Malformations Registry. Genotypes were obtained for 132 SNPs in genes involved in limb development (SHH, WNT7A, FGF4, FGF8, FGF10, TBX3, TBX5, SALL4, GREM1, GDF5, CTNNB1, EN1, CYP26A1, CYP26B1), angiogenesis (VEGFA, HIF1A, NOS3), and coagulation (F2, F5, MTHFR). Genotype call rates were >97% and SNPs were tested for departure from Hardy-Weinberg expectations by race/ethnic subgroups. For each SNP, odds ratios (OR)s and confidence intervals (CI)s were estimated and corrected for multiple comparisons for all LDs combined and for LD subtypes. Among non-Hispanic white infants, associations between FGF10 SNPs rs10805683 and rs13170645 and all LDs combined were statistically significant following correction for multiple testing (OR=1.99; 95% CI=1.43-2.77; uncorrected p=0.000043 for rs10805683 heterozygous genotype, and OR=2.37; 95% CI=1.48-3.78; uncorrected p=0.00032 for rs13170645 homozygous minor genotype). We also observed suggestive evidence for associations with SNPs in other genes including CYP26B1 and WNT7A. Animal studies have shown that FGF10 induces formation of the apical ectodermal ridge and is necessary for limb development. Our data suggest that common variants in FGF10 increase the risk for a wide range of non-syndromic limb deficiencies.
机译:我们对选定基因中的单核苷酸多态性(SNP)进行了基于人群的病例对照研究,以发现在肢体缺陷症(LD)病因中起作用的常见变体。该研究包括1998年至2005年从纽约州(NYS)所有出生中选择的389例原因不明的LD婴儿和980例未受影响的对照。我们使用了从NYS卫生部(DOH)先天性畸形登记处确定的病例。 。在涉及肢体发育的基因(SHH,WNT7A,FGF4,FGF8,FGF10,TBX3,TBX5,SALL4,GREM1,GDF5,CTNNB1,EN1,CYP26A1,CYP26B1),血管生成(VEGFA,HIF1A)中获得了132个SNP的基因型和凝结(F2,F5,MTHFR)。基因型检出率> 97%,并且按种族/族裔亚组测试了SNP是否偏离Hardy-Weinberg的期望。对于每个SNP,对于所有组合的LD和LD亚型的多重比较,估计并校正了优势比(OR)和置信区间(CI)。在非西班牙裔白人婴儿中,经过多次测试校正后,FGF10 SNP rs10805683和rs13170645以及所有合并的LD之间的关联具有统计学意义(OR = 1.99; 95%CI = 1.43-2.77;未经校正的rs10805683杂合基因型的p = 0.000043,或OR = 2.37; 95%CI = 1.48-3.78;对于rs13170645纯合的次要基因型,未校正的p = 0.00032)。我们还观察到与其他基因(包括CYP26B1和WNT7A)中的SNP关联的暗示证据。动物研究表明,FGF10诱导根尖外胚层脊的形成,是肢体发育所必需的。我们的数据表明,FGF10的常见变体增加了广泛的非综合征性肢体缺陷的风险。

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