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Concurrent triplication and uniparental isodisomy: evidence for microhomology-mediated break-induced replication model for genomic rearrangements

机译:并发三联和单亲等距:基因组重排的微观同源性介导的断裂诱导复制模型的证据

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摘要

Whole-genome oligonucleotide single-nucleotide polymorphism (oligo-SNP) arrays enable simultaneous interrogation of copy number variations (CNVs), copy neutral regions of homozygosity (ROH) and uniparental disomy (UPD). Structural variation in the human genome contributes significantly to genetic variation, and often has deleterious effects leading to disease causation. Co-occurrence of CNV and regions of allelic homozygosity in tandem involving the same chromosomal arm are extremely rare. Replication-based mechanisms such as microhomology-mediated break-induced replication (MMBIR) are recent models predicted to induce structural rearrangements and gene dosage aberrations; however, supportive evidence in humans for one-ended DNA break repair coupled with MMBIR giving rise to interstitial copy number gains and distal loss of heterozygosity has not been documented. We report on the identification and characterization of two cases with interstitial triplication followed by uniparental isodisomy (isoUPD) for remainder of the chromosomal arm. Case 1 has a triplication at 9q21.11–q21.33 and segmental paternal isoUPD for 9q21.33-qter, and presented with citrullinemia with a homozygous mutation in the argininosuccinate synthetase gene (ASS1 at 9q34.1). Case 2 has a triplication at 22q12.1–q12.2 and segmental maternal isoUPD 22q12.2-qter, and presented with hearing loss, mild dysmorphic features and bilateral iris coloboma. Interstitial triplication coupled with distal segmental isoUPD is a novel finding that provides human evidence for one-ended DNA break and replication-mediated repair. Both copy number gains and isoUPD may contribute to the phenotype. Significantly, these cases represent the first detailed genomic analysis that provides support for a MMBIR mechanism inducing copy number gains and segmental isoUPD in tandem.
机译:全基因组寡核苷酸单核苷酸多态性(oligo-SNP)阵列可以同时询问拷贝数变异(CNV),纯合性的中性区域(ROH)和单亲二体性(UPD)。人类基因组中的结构变异极大地促进了遗传变异,并经常具有导致疾病成因的有害影响。涉及同一染色体臂的CNV和等位基因纯合性区域的同时出现极少见。基于复制的机制,例如微同源性介导的断裂诱导的复制(MMBIR),是最近预测引起结构重排和基因剂量畸变的模型。然而,尚未有人类对单端DNA断裂修复以及MMBIR引起间质拷贝数增加和远侧杂合性丧失的支持性证据。我们报告了鉴定和鉴定两个间质重复的病例,然后是染色体臂其余部分的单亲等轴切(isoUPD)。案例1在9q21.11-q21.33处有一个三倍体,在9q21.33-qter处有段父本isoUPD,并呈现出瓜氨酸血红素,其精氨酸琥珀酸合成酶基因(ASS1在9q34.1)具有纯合突变。病例2在22q12.1–q12.2处有三倍体,母亲段isoUPD在22q12.2-qter处有节段,并伴有听力损失,轻度畸形和双侧虹膜虹膜瘤。间质三联与远端节段isoUPD结合是一个新颖的发现,为单端DNA断裂和复制介导的修复提供了人类证据。拷贝数的增加和isoUPD都可能影响表型。重要的是,这些案例代表了第一个详细的基因组分析,该分析为MMBIR机制提供了支持,该机制可诱导串联拷贝数增加和分段isoUPD。

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