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首页> 外文期刊>Clinical Chemistry: Journal of the American Association for Clinical Chemists >Accurate single-nucleotide polymorphism allele assignment in trisomic or duplicated regions by using a single base-extension assay with maldi-tof mass spectrometry.
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Accurate single-nucleotide polymorphism allele assignment in trisomic or duplicated regions by using a single base-extension assay with maldi-tof mass spectrometry.

机译:通过使用带有maldi-tof质谱的单碱基延伸测定法,在三体或重复区域中进行准确的单核苷酸多态性等位基因分配。

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摘要

BACKGROUND: The accurate assignment of alleles embedded within trisomic or duplicated regions is an essential prerequisite for assessing the combined effects of single-nucleotide polymorphisms (SNPs) and genomic copy number. Such an integrated analysis is challenging because heterozygotes for such a SNP may be one of 2 genotypes-AAB or ABB. Established methods for SNP genotyping, however, can have difficulty discriminating between the 2 heterozygous trisomic genotypes. We developed a method for assigning heterozygous trisomic genotypes that uses the ratio of the height of the 2 allele peaks obtained by mass spectrometry after a single-base extension assay. METHODS: Eighteen COL6A2 (collagen, type VI, alpha 2) SNPs were analyzed in euploid and trisomic individuals by means of a multiplexed single-base extension assay that generated allele-specific oligonucleotides of differing M(r) values for detection by MALDI-TOF mass spectrometry. Reference data (mean and SD) for the allele peak height ratios were determined from heterozygous euploid samples. The heterozygous trisomic genotypes were assigned by calculating the z score for each trisomic allele peak height ratio and by considering the sign (+/-) of the z score. RESULTS: Heterozygous trisomic genotypes were assigned in 96.1% (range, 89.9%-100%) of the samples for each SNP analyzed. The genotypes obtained were reproduced in 95 (97.5%) of 97 loci retested in a second assay. Subsequently, the origin of nondisjunction was determined in 108 (82%) of 132 family trios with a Down syndrome child. CONCLUSIONS: This approach enabled reliable genotyping of heterozygous trisomic samples and the determination of the origin of nondisjunction in Down syndrome family trios.
机译:背景:准确地分配包含在三体或重复区域内的等位基因是评估单核苷酸多态性(SNP)和基因组拷贝数的组合效应的必要前提。这种综合分析具有挑战性,因为这种SNP的杂合子可能是2种基因型-AAB或ABB中的一种。但是,已建立的SNP基因分型方法可能难以区分2种杂合的三体性基因型。我们开发了一种分配杂合三体基因型的方法,该方法使用单碱基延伸分析后通过质谱法获得的2个等位基因峰的高度之比。方法:通过多重单碱基延伸分析,在整倍体和三体个体中分析了十八种COL6A2(胶原蛋白,VI型,α2)单核苷酸多态性,生成了具有不同M(r)值的等位基因特异性寡核苷酸,用于MALDI-TOF检测质谱。从杂合整倍体样品中确定等位基因峰高比的参考数据(平均值和标准差)。通过计算每个三体性等位基因峰高比的z分数并考虑z分数的符号(+/-),来指定杂合三体基因型。结果:对于每个分析的SNP,杂合三体基因型分别占96.1%(范围为89.9%-100%)的样本中。在第二次测定中重新测试的97个基因座中,有95个(97.5%)复制了获得的基因型。随后,在唐氏综合症患儿的132个家庭三重奏中,有108个(82%)确定了不分离的起源。结论:这种方法能够对杂合三体样本进行可靠的基因分型,并能确定唐氏综合症三重奏中非分离的起源。

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