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明确界定 3q26 号染色体和 7q36 号染色体之间看似平衡易位的断点:KMT2C 破坏的作用。

Precise definition of the breakpoints of an apparently balanced translocation between chromosome 3q26 and chromosome 7q36: Role of KMT2C disruption.

机构信息

Center for Medical Genetics, Keio University School of Medicine, Tokyo, Japan.

Department of Pediatrics, Hokkaido University School of Medicine, Sapporo, Japan.

出版信息

Congenit Anom (Kyoto). 2023 Jul;63(4):121-124. doi: 10.1111/cga.12514. Epub 2023 Mar 28.

Abstract

When a de novo balanced reciprocal translocation is identified in the patient, the cause of phenotype of the patient can be explained by detecting the breakpoints of the genes. Here, we report a 3-year-old patient with developmental delay, autism spectrum disorder, and distinctive facial features who had an apparently balanced translocation between chromosome 3q26 and chromosome 7q36. Nanopore long-read sequencing revealed that balanced translocation disrupted the KMT2C gene, the haploinsufficiency of which leads to Kleefstra syndrome 2 characterized by delayed psychomotor development, variable intellectual disability and mild dysmorphism. Nanopore long-read sequencing was shown to be useful in elucidating the exact genetic etiology of patients with nonspecific clinical findings.

摘要

当在患者中发现新发平衡易位时,可以通过检测基因的断点来解释患者表型的原因。在这里,我们报告了一例 3 岁的患者,其表现为发育迟缓、自闭症谱系障碍和独特的面部特征,其染色体 3q26 和染色体 7q36 之间存在明显的平衡易位。纳米孔长读测序显示,平衡易位破坏了 KMT2C 基因,该基因的单倍体不足导致 Kleefstra 综合征 2,其特征为精神运动发育迟缓、可变智力残疾和轻度发育不良。纳米孔长读测序显示,在阐明具有非特异性临床发现的患者的确切遗传病因方面非常有用。

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