作为常染色体隐性神经发育综合征候选基因的 EHMT2

IF 4.6 2区 医学 Q1 NEUROSCIENCES
Molecular Neurobiology Pub Date : 2025-05-01 Epub Date: 2024-12-15 DOI:10.1007/s12035-024-04655-x
Laura Machado Lara Carvalho, Jessica Rzasa, Jennifer Kerkhof, Haley McConkey, Veniamin Fishman, Galina Koksharova, Alexander Augusto de Lima Jorge, Elisa Varella Branco, Danyllo Felipe de Oliveira, Beatriz Martinez-Delgado, Maria J Barrero, Tjitske Kleefstra, Bekim Sadikovic, Luciana Amaral Haddad, Débora Romeo Bertola, Carla Rosenberg, Ana Cristina Victorino Krepischi
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引用次数: 0

摘要

神经发育障碍(NDD)是一种具有高度遗传异质性的临床病症,涉及调控染色质结构和功能的基因明显丰富。EHMT1/2 表观遗传复合物在以高度组织特异性和时间特异性的方式抑制基因转录方面发挥着至关重要的作用。导致 EHMT1 基因杂合性功能缺失(LoF)的突变与 Kleefstra 综合征 1(KS1)有关。EHMT2 是一种参与表观遗传调控的基因,但迄今为止,该基因突变与 NDDs 病因学的关系尚未确定。通过外显子组测序,在一名成年女性患者身上发现了一个同源的 EHMT2 LoF 变异基因[(NM_006709.5):c.328 + 2 T > G],该患者的表型与 KS1 相似,表现为智力障碍、攻击行为、面部畸形、C2-C3 椎体融合、室间隔缺损、乳头超常、脐疝以及手指和脚趾畸形。人群数据库中没有同卵 LoF EHMT2 变体,这突出表明这些变体受到了巨大的负选择压力。对EHMT2(NM_006709.5):c.328 + 2 T > G变异的影响进行的硅学评估预测,第3内含子剪接供体位点将被取消。然而,人工检测发现该 EHMT2 区域存在潜在的隐性供体剪接位点。为了直接了解该剪接位点变异的影响,我们采用了 RNAseq 分析,结果发现患者血液中的第 3 外显子中有两个隐性供体位点,预计这两个位点会对蛋白质产生框外或框内效应。利用经临床验证的 EpiSign 检测方法对血液样本中的 DNA 进行了甲基化分析,结果显示,同卵 EHMT2(NM_006709.5):c.328 + 2 T > G 剪接位点变异患者的 KS1 表征呈阳性。综上所述,临床、遗传和表观遗传学数据表明,EHMT2剪接位点变异具有 LoF 机制,并支持该基因成为常染色体隐性 Kleefstra-like 综合征的新候选基因。要证实 EHMT2 是一种新型 NDD 基因,还需要鉴定更多具有 EHMT2 缺陷变异的病例,并开展进一步的功能验证研究。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
EHMT2 as a Candidate Gene for an Autosomal Recessive Neurodevelopmental Syndrome.

Neurodevelopmental disorders (NDD) comprise clinical conditions with high genetic heterogeneity and a notable enrichment of genes involved in regulating chromatin structure and function. The EHMT1/2 epigenetic complex plays a crucial role in repression of gene transcription in a highly tissue- and temporal-specific manner. Mutations resulting in heterozygous loss-of-function (LoF) of EHMT1 are implicated in Kleefstra syndrome 1 (KS1). EHMT2 is a gene acting in epigenetic regulation; however, the involvement of mutations in this gene in the etiology of NDDs has not been established thus far. A homozygous EHMT2 LoF variant [(NM_006709.5):c.328 + 2 T > G] was identified by exome sequencing in an adult female patient with a phenotype resembling KS1, presenting with intellectual disability, aggressive behavior, facial dysmorphisms, fused C2-C3 vertebrae, ventricular septal defect, supernumerary nipple, umbilical hernia, and fingers and toes abnormalities. The absence of homozygous LoF EHMT2 variants in population databases underscores the significant negative selection pressure exerted on these variants. In silico evaluation of the effect of the EHMT2(NM_006709.5):c.328 + 2 T > G variant predicted the abolishment of intron 3 splice donor site. However, manual inspection revealed potential cryptic donor splice sites at this EHMT2 region. To directly access the impact of this splice site variant, RNAseq analysis was employed and disclosed the usage of two cryptic donor sites within exon 3 in the patient's blood, which are predicted to result in either an out-of-frame or in-frame effect on the protein. Methylation analysis was conducted on DNA from blood samples using the clinically validated EpiSign assay, which revealed that the patient with the homozygous EHMT2(NM_006709.5):c.328 + 2 T > G splice site variant is conclusively positive for the KS1 episignature. Taken together, clinical, genetic, and epigenetic data pointed to a LoF mechanism for the EHMT2 splice variant and support this gene as a novel candidate for an autosomal recessive Kleefstra-like syndrome. The identification of additional cases with deleterious EHMT2 variants, alongside further functional validation studies, is required to substantiate EHMT2 as a novel NDD gene.

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来源期刊
Molecular Neurobiology
Molecular Neurobiology 医学-神经科学
CiteScore
9.00
自引率
2.00%
发文量
480
审稿时长
1 months
期刊介绍: Molecular Neurobiology is an exciting journal for neuroscientists needing to stay in close touch with progress at the forefront of molecular brain research today. It is an especially important periodical for graduate students and "postdocs," specifically designed to synthesize and critically assess research trends for all neuroscientists hoping to stay active at the cutting edge of this dramatically developing area. This journal has proven to be crucial in departmental libraries, serving as essential reading for every committed neuroscientist who is striving to keep abreast of all rapid developments in a forefront field. Most recent significant advances in experimental and clinical neuroscience have been occurring at the molecular level. Until now, there has been no journal devoted to looking closely at this fragmented literature in a critical, coherent fashion. Each submission is thoroughly analyzed by scientists and clinicians internationally renowned for their special competence in the areas treated.
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