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HECTD1基因中的序列变异会导致一种可变的神经发育障碍。

Sequence variants in HECTD1 result in a variable neurodevelopmental disorder.

作者信息

Zerafati-Jahromi Gazelle, Oxman Elias, Hoang Hieu D, Charng Wu-Lin, Kotla Tanvitha, Yuan Weimin, Ishibashi Keito, Sebaoui Sonia, Luedtke Kathryn, Winrow Bryce, Ganetzky Rebecca D, Ruiz Anna, Manso-Basúz Carmen, Spataro Nino, Kannu Peter, Athey Taryn, Peroutka Christina, Barnes Caitlin, Sidlow Richard, Anadiotis George, Magnussen Kari, Valenzuela Irene, Moles-Fernandez Alejandro, Berger Seth, Grant Christina L, Vilain Eric, Arnadottir Gudny A, Sulem Patrick, Sulem Telma S, Stefansson Kari, Massey Shavonne, Ginn Natalie, Poduri Annapurna, D'Gama Alissa M, Valentine Rozalia, Trowbridge Sara K, Murali Chaya N, Franciskovich Rachel, Tran Yen, Webb Bryn D, Keppler-Noreuil Kim M, Hall April L, McGivern Bobbi, Monaghan Kristin G, Guillen Sacoto Maria J, Baldridge Dustin, Silverman Gary A, Dahiya Sonika, Turner Tychele N, Schedl Tim, Corbin Joshua G, Pak Stephen C, Zohn Irene E, Gurnett Christina A

机构信息

Department of Neurology, Washington University in St. Louis, St. Louis, MO, USA.

Center for Genetic Medicine Research, Children's National Hospital, Washington, DC, USA.

出版信息

Am J Hum Genet. 2025 Mar 6;112(3):537-553. doi: 10.1016/j.ajhg.2025.01.001. Epub 2025 Jan 28.

Abstract

Dysregulation of genes encoding the homologous to E6AP C-terminus (HECT) E3 ubiquitin ligases has been linked to cancer and structural birth defects. One member of this family, the HECT-domain-containing protein 1 (HECTD1), mediates developmental pathways, including cell signaling, gene expression, and embryogenesis. Through GeneMatcher, we identified 14 unrelated individuals with 15 different variants in HECTD1 (10 missense, 3 frameshift, 1 nonsense, and 1 splicing variant) with neurodevelopmental disorders (NDDs), including autism, attention-deficit/hyperactivity disorder, and epilepsy. Of these 15 HECTD1 variants, 10 occurred de novo, 3 had unknown inheritance, and 2 were compound heterozygous. While all individuals in this cohort displayed NDDs, no genotype-phenotype correlation was apparent. Conditional knockout of Hectd1 in the neural lineage in mice resulted in microcephaly, severe hippocampal malformations, and complete agenesis of the corpus callosum, supporting a role for Hectd1 in embryonic brain development. Functional studies of select variants in C. elegans revealed dominant effects, including either change-of-function or loss-of-function/haploinsufficient mechanisms, which may explain phenotypic heterogeneity. Significant enrichment of de novo variants in HECTD1 was also shown in an independent cohort of 53,305 published trios with NDDs or congenital heart disease. Thus, our clinical and functional data support a critical requirement of HECTD1 for human brain development.

摘要

编码E6相关蛋白C端同源物(HECT)E3泛素连接酶的基因失调与癌症和先天性结构缺陷有关。该家族的一个成员,含HECT结构域蛋白1(HECTD1),介导包括细胞信号传导、基因表达和胚胎发生在内的发育途径。通过基因匹配器,我们在患有神经发育障碍(NDDs)(包括自闭症、注意力缺陷多动障碍和癫痫)的个体中,鉴定出14名无关个体,他们的HECTD1基因存在15种不同变异(10种错义变异、3种移码变异、1种无义变异和1种剪接变异)。在这15种HECTD1变异中,10种为新生变异,3种遗传方式未知,2种为复合杂合子。虽然该队列中的所有个体都表现出神经发育障碍,但未发现明显的基因型-表型相关性。在小鼠神经谱系中条件性敲除Hectd1会导致小头畸形、严重的海马畸形和胼胝体完全缺失,这支持了Hectd1在胚胎脑发育中的作用。对秀丽隐杆线虫中选定变异的功能研究揭示了显性效应,包括功能改变或功能丧失/单倍体不足机制,这可能解释了表型异质性。在一个由53305个已发表的患有神经发育障碍或先天性心脏病的三联体组成的独立队列中,也显示出HECTD1新生变异的显著富集。因此,我们的临床和功能数据支持HECTD1对人类脑发育的关键需求。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/65e1/11947180/a3d73e7f517b/gr1.jpg

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