伴有严重神经发育迟缓、生长衰竭和畸形的女性先证存在4p15.32 . p16.1间质缺失和复杂色丛。

IF 1.3 4区 生物学 Q4 GENETICS & HEREDITY
Dong Li, Alanna Strong, Cuiping Hou, Helen Downes, Amanda Barone Pritchard, Pamela Mazzeo, Elaine H Zackai, Laura K Conlin, Hakon Hakonarson
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引用次数: 1

摘要

复杂的染色体重排包括在单个染色体内或跨多个染色体的遗传物质的重组。这些事件可通过缺失、复制和结构重排破坏编码DNA和基因调控元件,从而引起严重的人类疾病。在这里,我们描述了一名5岁的女性,患有严重的发育迟缓,畸形特征,多缝合线颅缝闭合和生长衰竭,发现有一系列复杂的染色体内和染色体间平衡重排,涉及染色体4、11、13和x。FISH与基于研究的短读基因组测序结合sanger测序,精确地将她的断点映射到碱基对分辨率,以了解她的表型的分子基础。基因组分析显示在4p16.1-p15.32和4q31.1处有两个致病性缺失,解释了她的发育迟缓和畸形。我们确定了超过60个断点,其中许多具有钝端和有限的同源性,支持非同源端加入在重组和解决精子色plexa事件中的作用。我们认为,患者基因组重排的复杂性和大量断点导致基因表达失调,通过三维染色质相互作用或拓扑相关结构域导致生长衰竭和颅缝闭锁。我们的工作支持基因组测序在理解人类疾病中复杂染色体重排的分子基础方面的重要作用。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

Interstitial deletion 4p15.32p16.1 and complex chromoplexy in a female proband with severe neurodevelopmental delay, growth failure and dysmorphism.

Interstitial deletion 4p15.32p16.1 and complex chromoplexy in a female proband with severe neurodevelopmental delay, growth failure and dysmorphism.

Interstitial deletion 4p15.32p16.1 and complex chromoplexy in a female proband with severe neurodevelopmental delay, growth failure and dysmorphism.

Interstitial deletion 4p15.32p16.1 and complex chromoplexy in a female proband with severe neurodevelopmental delay, growth failure and dysmorphism.

Complex chromosomal rearrangements involve the restructuring of genetic material within a single chromosome or across multiple chromosomes. These events can cause serious human disease by disrupting coding DNA and gene regulatory elements via deletions, duplications, and structural rearrangements. Here we describe a 5-year-old female with severe developmental delay, dysmorphic features, multi-suture craniosynostosis, and growth failure found to have a complex series of balanced intra- and inter-chromosomal rearrangements involving chromosomes 4, 11, 13, and X. Initial clinical studies were performed by karyotype, chromosomal microarray, and FISH with research-based short-read genome sequencing coupled with sanger sequencing to precisely map her breakpoints to the base pair resolution to understand the molecular basis of her phenotype. Genome analysis revealed two pathogenic deletions at 4p16.1-p15.32 and 4q31.1, accounting for her developmental delay and dysmorphism. We identified over 60 breakpoints, many with blunt ends and limited homology, supporting a role for non-homologous end joining in restructuring and resolution of the seminal chromoplexy event. We propose that the complexity of our patient's genomic rearrangements with a high number of breakpoints causes dysregulation of gene expression by three-dimensional chromatin interactions or topologically associating domains leading to growth failure and craniosynostosis. Our work supports an important role for genome sequencing in understanding the molecular basis of complex chromosomal rearrangements in human disease.

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来源期刊
Molecular Cytogenetics
Molecular Cytogenetics GENETICS & HEREDITY-
CiteScore
2.60
自引率
7.70%
发文量
49
审稿时长
>12 weeks
期刊介绍: Molecular Cytogenetics encompasses all aspects of chromosome biology and the application of molecular cytogenetic techniques in all areas of biology and medicine, including structural and functional organization of the chromosome and nucleus, genome variation, expression and evolution, chromosome abnormalities and genomic variations in medical genetics and tumor genetics. Molecular Cytogenetics primarily defines a large set of the techniques that operate either with the entire genome or with specific targeted DNA sequences. Topical areas include, but are not limited to: -Structural and functional organization of chromosome and nucleus- Genome variation, expression and evolution- Animal and plant molecular cytogenetics and genomics- Chromosome abnormalities and genomic variations in clinical genetics- Applications in preimplantation, pre- and post-natal diagnosis- Applications in the central nervous system, cancer and haematology research- Previously unreported applications of molecular cytogenetic techniques- Development of new techniques or significant enhancements to established techniques. This journal is a source for numerous scientists all over the world, who wish to improve or introduce molecular cytogenetic techniques into their practice.
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