编码TFIIIC2复合物亚基的GTF3C3双等位变异与人类和斑马鱼的神经发育表型相关。

IF 4.1 Q1 CLINICAL NEUROLOGY
Brain communications Pub Date : 2025-02-05 eCollection Date: 2025-01-01 DOI:10.1093/braincomms/fcaf055
Mohamed S Abdel-Hamid, Adeline Paimboeuf, Maha S Zaki, Fernanda Figueiredo, Sherif F Abdel-Ghafar, Sabrina Maher, Rún Friðriksdóttir, Patrick Sulem, Hákon Björn Högnason, Sigrún Hallgrímsdóttir, Catarina Falleiros N Rojas, Fernando Kok, Mohnish Suri, César Augusto P F Alves, Henry Houlden, Reza Maroofian, Shunmoogum A Patten
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引用次数: 0

摘要

RNA聚合酶III转录必需的非编码RNA,这一过程受转录因子TFIIIB和TFIIIC的调控。尽管在一些神经发育障碍患者中已经发现了TFIIIC亚基基因的种系变异,但相关的发病机制和临床谱尚未得到很好的定义。在此,我们描述了通过GeneMatcher收集的来自三个不同种族的不相关家庭的四名患者的GTF3C3双等位基因变异的鉴定,该基因编码TFIIIC亚基的一个关键成分。患者表现出小头畸形、发育迟缓、智力残疾和明显的畸形相,在很小的儿童中就可以辨认出来。他们的脑成像显示脑萎缩,主要是小脑受累,以及额叶发育不全,一名患者有中度至重度的简化脑回模式。半数患者出现癫痫发作。外显子组/基因组测序显示了4种不同的GTF3C3变体,包括3种错义变体(p.Cys172Gly, p.Val427Phe和p.a ala509thr)和1种无义变体(p.a g717ter)。错义变异不存在于已知的遗传数据库中,并且发生在高度保守的残基中。敲除GTF3C3同源基因后,斑马鱼重现了小头畸形、脑异常和癫痫易感性等关键临床症状。我们还观察到,在斑马鱼敲除模型中,RNA聚合酶III靶基因表达降低。本研究描述了人类和斑马鱼与双等位基因GTF3C3变异相关的一种新的神经发育综合征,并强调需要进一步研究tfiic相关基因变异的生物学影响及其对RNA聚合酶iii相关病理的贡献。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Biallelic variants in GTF3C3 encoding a subunit of the TFIIIC2 complex are associated with neurodevelopmental phenotypes in humans and zebrafish.

RNA polymerase III transcribes essential non-coding RNAs, a process regulated by transcription factors TFIIIB and TFIIIC. Although germline variants in TFIIIC subunit genes have been described in a few patients with neurodevelopmental disorders, the associated pathogenesis and clinical spectrum are not yet well defined. Herein, we describe the identification of biallelic variants in GTF3C3, which encodes a key component of the TFIIIC subunit, in four patients from three unrelated families of different ethnicities collected through GeneMatcher. The patients exhibited microcephaly, developmental delay, intellectual disability and distinctive dysmorphic facies that appear recognizable in very young children. Their brain imaging showed brain atrophy with predominant cerebellar involvement, as well as hypoplasia of the frontal lobes and one patient had moderate to severe simplified gyral pattern. Seizures were observed in half of the patients. Exome/genome sequencing revealed four different GTF3C3 variants including three missense (p.Cys172Gly, p.Val427Phe and p.Ala509Thr) and one nonsense variant (p.Arg717Ter). Missense variants were not present in known genetic databases and occurred in highly conserved residues. Knockout of the GTF3C3 ortholog in zebrafish recapitulated the key clinical symptoms including microcephaly, brain anomalies and seizure susceptibility. We also observed reduced RNA polymerase III target gene expression in the zebrafish knockout model. This study describes a new neurodevelopmental syndrome in humans and zebrafish associated with biallelic GTF3C3 variants and underscores the need for further research into the biological impacts of variants in TFIIIC-linked genes and their contribution to RNA polymerase III-related pathologies.

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