长读纳米孔测序确定了一名患有综合征性发育迟缓的中国女孩MEIS2基因的从头顺中心反转的精确断点。

IF 2 3区 医学 Q2 PEDIATRICS BMC Pediatrics Pub Date : 2025-01-09 DOI:10.1186/s12887-024-05267-z
Jianxin Tan, Mingtao Huang, Xiuqing Ji, An Liu, Fengchang Qiao, Cuiping Zhang, Lulu Meng, Yan Wang, Zhengfeng Xu, Ping Hu
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引用次数: 0

摘要

背景:染色体倒位是罕见疾病的未被充分认识的原因,因为它们的检测、解决和临床解释仍然具有挑战性。MEIS2基因的杂合突变导致常染色体显性综合征,其特征是智力残疾、腭裂、先天性心脏缺陷和面部畸形,其严重程度和外显率各不相同。病例介绍:在此,我们报告了一名患有智力残疾、发育迟缓和先天性心脏缺陷的中国女孩,在她的g带核型分析中发现了一个新生的旁中心反转46,XX, inv(15)(q15q26.1),而其他常规方法,包括染色体微阵列分析和全外显子组测序,都未能发现任何可以解释先证表型的病理变异。随后,直接进行长读纳米孔测序,确定了反转的断点位置,在8号内含子处破坏了MEIS2基因。这些断点也被Sanger测序证实。结论:总之,我们报道了首个破坏MEIS2基因的染色体倒位,并通过长读纳米孔测序对其进行了精细定位。我们的数据不仅扩大了meis2引起的综合征性发育迟缓的临床范围,而且还说明了长读测序在阐明具有相对非特异性临床表现和染色体倒置的患者的精确遗传病因方面的价值,这些患者超出了常规方法的分辨率。
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Long read Nanopore sequencing identifies precise breakpoints of a de novo paracentric inversion that disrupt the MEIS2 gene in a Chinese girl with syndromic developmental delay.

Background: Chromosomal inversions are underappreciated causes of rare diseases given their detection, resolution, and clinical interpretation remain challenging. Heterozygous mutations in the MEIS2 gene cause an autosomal dominant syndrome characterized by intellectual disability, cleft palate, congenital heart defect, and facial dysmorphism at variable severity and penetrance.

Case presentation: Herein, we report a Chinese girl with intellectual disability, developmental delay, and congenital heart defect, in whom G-banded karyotype analysis identified a de novo paracentric inversion 46,XX, inv(15)(q15q26.1) and other conventional approaches including chromosomal microarray analysis and whole exome sequencing were failed to detect any pathologic variants that can explain the phenotypes of the proband. Subsequently, long-read Nanopore sequencing was directly conducted and defined the breakpoint position of the inversion, disrupting the MEIS2 gene at intron 8. These breakpoints were also confirmed by Sanger sequencing.

Conclusions: In conclusion, we report the first chromosomal inversion disrupting the MEIS2 gene, which was fine-mapped by long read Nanopore sequencing. Our data not only expand the clinical spectrum of MEIS2-caused syndromic developmental delay, but also illustrate the value of long-read sequencing in elucidating the precise genetic etiology of patients with relatively nonspecific clinical findings and chromosomal inversion that are beyond the resolution of conventional approaches.

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来源期刊
BMC Pediatrics
BMC Pediatrics PEDIATRICS-
CiteScore
3.70
自引率
4.20%
发文量
683
审稿时长
3-8 weeks
期刊介绍: BMC Pediatrics is an open access journal publishing peer-reviewed research articles in all aspects of health care in neonates, children and adolescents, as well as related molecular genetics, pathophysiology, and epidemiology.
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