CxxC结构域的KDM2B变异体损害其dna结合能力并引起一种独特的神经发育综合征。

IF 3.1 2区 生物学 Q3 BIOCHEMISTRY & MOLECULAR BIOLOGY
Amber S E van Oirsouw, Michael A Hadders, Martijn Koetsier, Edith D J Peters, Nurit Assia Batzir, Tahsin Stefan Barakat, Diana Baralle, Adelyn Beil, Marie-Noëlle Bonnet-Dupeyron, Philip M Boone, Arjan Bouman, Deanna Alexis Carere, Benjamin Cogne, Leslie Dunnington, Laura S Farach, Casie A Genetti, Bertrand Isidor, Louis Januel, Aakash Joshi, Nayana Lahiri, Kristen N Lee, Idit Maya, Meriel McEntagart, Hope Northrup, Mathilde Pujalte, Kate Richardson, Susan Walker, Bobby P C Koeleman, Mariëlle Alders, Richard H van Jaarsveld, Renske Oegema
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引用次数: 0

摘要

影响表观遗传调节剂KDM2B的罕见变异导致最近描述的神经发育障碍。有趣的是,我们之前发现了与kdm2b相关的一般表观特征和dna结合CxxC结构域变体特有的子特征。鉴于存在独特的子特征,我们着手确定KDM2B CxxC变异是否与独特的表型和疾病机制相关。我们招募了携带杂合CxxC变异的个体,并评估了变异对蛋白质表达和dna结合能力的影响。我们分析了来自19个个体的临床数据,其中包括10个先前未描述的具有7种新型CxxC变体的个体。与KDM2B单倍不全个体相比,KDM2B- cxxc队列的核心表型更为广泛。所有携带CxxC变异的个体都表现出发育迟缓,主要表现在语言和运动领域,此外还有可变的智力残疾和轻度的面部畸形。在高达78%的个体中观察到先天性心脏缺陷,其他常见的发现包括肌肉骨骼,眼科和泌尿生殖器异常,以及行为挑战和喂养困难。功能分析显示,虽然CxxC变异的突变型KDM2B蛋白可以在体外表达,但与野生型相比,其dna结合能力显著降低。本研究表明,KDM2B CxxC变异引起一种独特的神经发育综合征,可能通过不同于单倍功能不全的分子机制。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
KDM2B variants in the CxxC domain impair its DNA-binding ability and cause a distinct neurodevelopmental syndrome.

Rare variants affecting the epigenetic regulator KDM2B cause a recently delineated neurodevelopmental disorder. Interestingly, we previously identified both a general KDM2B-associated episignature and a subsignature specific to variants in the DNA-binding CxxC domain. In light of the existence of a distinct subsignature, we set out to determine if KDM2B CxxC variants are associated with a unique phenotype and disease mechanism. We recruited individuals with heterozygous CxxC variants and assessed the variants' effect on protein expression and DNA-binding ability. We analyzed clinical data from 19 individuals, including ten previously undescribed individuals with seven novel CxxC variants. The core phenotype of the KDM2B-CxxC cohort is more extensive as compared to that of individuals with KDM2B haploinsufficiency. All individuals with CxxC variants presented with developmental delay, mainly in the speech and motor domain, in addition to variable intellectual disability and mild facial dysmorphism. Congenital heart defects were observed in up to 78% of individuals, with additional common findings including musculoskeletal, ophthalmological, and urogenital anomalies, as well as behavioral challenges and feeding difficulties. Functional assays revealed that while mutant KDM2B protein with CxxC variants can be expressed in vitro, its DNA-binding ability is significantly reduced compared to wildtype. This study shows that KDM2B CxxC variants cause a distinct neurodevelopmental syndrome, possibly through a molecular mechanism different from haploinsufficiency.

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来源期刊
Human molecular genetics
Human molecular genetics 生物-生化与分子生物学
CiteScore
6.90
自引率
2.90%
发文量
294
审稿时长
2-4 weeks
期刊介绍: Human Molecular Genetics concentrates on full-length research papers covering a wide range of topics in all aspects of human molecular genetics. These include: the molecular basis of human genetic disease developmental genetics cancer genetics neurogenetics chromosome and genome structure and function therapy of genetic disease stem cells in human genetic disease and therapy, including the application of iPS cells genome-wide association studies mouse and other models of human diseases functional genomics computational genomics In addition, the journal also publishes research on other model systems for the analysis of genes, especially when there is an obvious relevance to human genetics.
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