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Discovery of variants unmasked by hemizygous deletions

机译:发现半合子缺失掩盖的变体

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摘要

Array-based genome-wide segmental aneuploidy screening detects both de novo and inherited copy number variations (CNVs). In sporadic patients de novo CNVs are interpreted as potentially pathogenic. However, a deletion, transmitted from a healthy parent, may be pathogenic if it overlaps with a mutated second allele inherited from the other healthy parent. To detect such events, we performed multiplex enrichment and next-generation sequencing of the entire coding sequence of all genes within unique hemizygous deletion regions in 20 patients (1.53 Mb capture footprint). Out of the detected 703 non-synonymous single-nucleotide variants (SNVs), 8 represented variants being unmasked by a hemizygous deletion. Although evaluation of inheritance patterns, Grantham matrix scores, evolutionary conservation and bioinformatic predictions did not consistently indicate pathogenicity of these variants, no definitive conclusions can be drawn without functional validation. However, in one patient with severe mental retardation, lack of speech, microcephaly, cheilognathopalatoschisis and bilateral hearing loss, we discovered a second smaller deletion, inherited from the other healthy parent, resulting in loss of both alleles of the highly conserved heat shock factor binding protein 1 (HSBP1) gene. Conceivably, inherited deletions may unmask rare pathogenic variants that may exert a phenotypic impact through a recessive mode of gene action.European Journal of Human Genetics advance online publication, 18 January 2012; doi:10.1038/ejhg.2011.263.
机译:基于阵列的全基因组片段非整倍性筛选可同时检测从头和遗传拷贝数变异(CNV)。在散发患者中,新CNV被解释为潜在的致病性。但是,从健康亲本传播的缺失如果与从另一健康亲本遗传的突变第二等位基因重叠,则可能是致病的。为了检测此类事件,我们对20位患者的独特半合子缺失区域内的所有基因的整个编码序列进行了多重富集和下一代测序(1.53 Mb捕获足迹)。在检测到的703个非同义单核苷酸变体(SNV)中,有8个代表的变体未被半合子缺失所掩盖。尽管对遗传模式,格兰瑟姆矩阵评分,进化保守性和生物信息学预测的评估并不能始终表明这些变异的致病性,但如果没有功能验证就无法得出明确的结论。然而,在一名患有严重智力障碍,语言障碍,小头畸形,颈椎弓根裂和双侧听力减退的患者中,我们发现了另一个较小的缺失,该缺失是从另一位健康父母那里继承的,导致高度保守的热休克因子结合的两个等位基因均丢失蛋白1(HSBP1)基因。可以想象,遗传的缺失可能会掩盖稀有的致病变体,这些变体可能通过隐性的基因作用方式发挥表型的作用。欧洲人类遗传学杂志在线提前出版,2012年1月18日; doi:10.1038 / ejhg.2011.263。

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