Comprehensive EHMT1 variants analysis broadens genotype-phenotype associations and molecular mechanisms in Kleefstra syndrome.

IF 8.1 1区 生物学 Q1 GENETICS & HEREDITY American journal of human genetics Pub Date : 2024-08-08 Epub Date: 2024-07-15 DOI:10.1016/j.ajhg.2024.06.008
Dmitrijs Rots, Arianne Bouman, Ayumi Yamada, Michael Levy, Alexander J M Dingemans, Bert B A de Vries, Martina Ruiterkamp-Versteeg, Nicole de Leeuw, Charlotte W Ockeloen, Rolph Pfundt, Elke de Boer, Joost Kummeling, Bregje van Bon, Hans van Bokhoven, Nael Nadif Kasri, Hanka Venselaar, Marielle Alders, Jennifer Kerkhof, Haley McConkey, Alma Kuechler, Bart Elffers, Rixje van Beeck Calkoen, Susanna Hofman, Audrey Smith, Maria Irene Valenzuela, Siddharth Srivastava, Zoe Frazier, Isabelle Maystadt, Carmelo Piscopo, Giuseppe Merla, Meena Balasubramanian, Gijs W E Santen, Kay Metcalfe, Soo-Mi Park, Laurent Pasquier, Siddharth Banka, Dian Donnai, Daniel Weisberg, Gertrud Strobl-Wildemann, Annemieke Wagemans, Maaike Vreeburg, Diana Baralle, Nicola Foulds, Ingrid Scurr, Nicola Brunetti-Pierri, Johanna M van Hagen, Emilia K Bijlsma, Anna H Hakonen, Carolina Courage, David Genevieve, Lucile Pinson, Francesca Forzano, Charu Deshpande, Maria L Kluskens, Lindsey Welling, Astrid S Plomp, Els K Vanhoutte, Louisa Kalsner, Janna A Hol, Audrey Putoux, Johanna Lazier, Pradeep Vasudevan, Elizabeth Ames, Jessica O'Shea, Damien Lederer, Julie Fleischer, Mary O'Connor, Melissa Pauly, Georgia Vasileiou, André Reis, Catherine Kiraly-Borri, Arjan Bouman, Chris Barnett, Marjan Nezarati, Lauren Borch, Gea Beunders, Kübra Özcan, Stéphanie Miot, Catharina M L Volker-Touw, Koen L I van Gassen, Gerarda Cappuccio, Katrien Janssens, Nofar Mor, Inna Shomer, Dan Dominissini, Matthew L Tedder, Alison M Muir, Bekim Sadikovic, Han G Brunner, Lisenka E L M Vissers, Yoichi Shinkai, Tjitske Kleefstra
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引用次数: 0

Abstract

The shift to a genotype-first approach in genetic diagnostics has revolutionized our understanding of neurodevelopmental disorders, expanding both their molecular and phenotypic spectra. Kleefstra syndrome (KLEFS1) is caused by EHMT1 haploinsufficiency and exhibits broad clinical manifestations. EHMT1 encodes euchromatic histone methyltransferase-1-a pivotal component of the epigenetic machinery. We have recruited 209 individuals with a rare EHMT1 variant and performed comprehensive molecular in silico and in vitro testing alongside DNA methylation (DNAm) signature analysis for the identified variants. We (re)classified the variants as likely pathogenic/pathogenic (molecularly confirming Kleefstra syndrome) in 191 individuals. We provide an updated and broader clinical and molecular spectrum of Kleefstra syndrome, including individuals with normal intelligence and familial occurrence. Analysis of the EHMT1 variants reveals a broad range of molecular effects and their associated phenotypes, including distinct genotype-phenotype associations. Notably, we showed that disruption of the "reader" function of the ankyrin repeat domain by a protein altering variant (PAV) results in a KLEFS1-specific DNAm signature and milder phenotype, while disruption of only "writer" methyltransferase activity of the SET domain does not result in KLEFS1 DNAm signature or typical KLEFS1 phenotype. Similarly, N-terminal truncating variants result in a mild phenotype without the DNAm signature. We demonstrate how comprehensive variant analysis can provide insights into pathogenesis of the disorder and DNAm signature. In summary, this study presents a comprehensive overview of KLEFS1 and EHMT1, revealing its broader spectrum and deepening our understanding of its molecular mechanisms, thereby informing accurate variant interpretation, counseling, and clinical management.

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全面的 EHMT1 变异分析拓宽了 Kleefstra 综合征的基因型-表型关联和分子机制。
基因诊断中基因型优先方法的转变彻底改变了我们对神经发育性疾病的认识,扩大了其分子和表型范围。克莱夫斯特拉综合征(KLEFS1)是由 EHMT1 单倍体缺乏引起的,具有广泛的临床表现。EHMT1 编码外色素组蛋白甲基转移酶-1--表观遗传机制的关键组成部分。我们招募了 209 名具有罕见 EHMT1 变异的个体,并对确定的变体进行了全面的分子硅学和体外测试以及 DNA 甲基化(DNAm)特征分析。我们将 191 人的变异体(重新)归类为可能致病/致病(分子证实为 Kleefstra 综合征)。我们提供了克莱夫斯特拉综合征最新的、更广泛的临床和分子谱,包括智力正常的个体和家族性发生的个体。对 EHMT1 变体的分析揭示了广泛的分子效应及其相关表型,包括不同基因型与表型之间的关联。值得注意的是,我们发现,通过蛋白改变变体(PAV)破坏ankyrin重复结构域的 "阅读器 "功能会导致KLEFS1特异性DNAm特征和较轻的表型,而仅破坏SET结构域的 "作者 "甲基转移酶活性不会导致KLEFS1 DNAm特征或典型的KLEFS1表型。同样,N-末端截断变体也会导致轻微的表型,但没有DNAm特征。我们展示了综合变异分析是如何深入了解该疾病的发病机制和 DNAm 特征的。总之,本研究全面概述了 KLEFS1 和 EHMT1,揭示了其更广泛的谱系,加深了我们对其分子机制的理解,从而为准确的变异解读、咨询和临床管理提供了依据。
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来源期刊
CiteScore
14.70
自引率
4.10%
发文量
185
审稿时长
1 months
期刊介绍: The American Journal of Human Genetics (AJHG) is a monthly journal published by Cell Press, chosen by The American Society of Human Genetics (ASHG) as its premier publication starting from January 2008. AJHG represents Cell Press's first society-owned journal, and both ASHG and Cell Press anticipate significant synergies between AJHG content and that of other Cell Press titles.
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