Heterozygous nonsense variants in the ferritin heavy-chain gene FTH1 cause a neuroferritinopathy.

IF 3.3 Q2 GENETICS & HEREDITY
HGG Advances Pub Date : 2023-10-12 Epub Date: 2023-09-03 DOI:10.1016/j.xhgg.2023.100236
Joseph T Shieh, Jesus A Tintos-Hernandez, Chaya N Murali, Monica Penon-Portmann, Marco Flores-Mendez, Adrian Santana, Joshua A Bulos, Kang Du, Lucie Dupuis, Nadirah Damseh, Roberto Mendoza-Londoño, Camilla Berera, Julieann C Lee, Joanna J Phillips, César A P F Alves, Ivan J Dmochowski, Xilma R Ortiz-González
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引用次数: 0

Abstract

Ferritin, the iron-storage protein, is composed of light- and heavy-chain subunits, encoded by FTL and FTH1, respectively. Heterozygous variants in FTL cause hereditary neuroferritinopathy, a type of neurodegeneration with brain iron accumulation (NBIA). Variants in FTH1 have not been previously associated with neurologic disease. We describe the clinical, neuroimaging, and neuropathology findings of five unrelated pediatric patients with de novo heterozygous FTH1 variants. Children presented with developmental delay, epilepsy, and progressive neurologic decline. Nonsense FTH1 variants were identified using whole-exome sequencing, with a recurrent variant (p.Phe171∗) identified in four unrelated individuals. Neuroimaging revealed diffuse volume loss, features of pontocerebellar hypoplasia, and iron accumulation in the basal ganglia. Neuropathology demonstrated widespread ferritin inclusions in the brain. Patient-derived fibroblasts were assayed for ferritin expression, susceptibility to iron accumulation, and oxidative stress. Variant FTH1 mRNA transcripts escape nonsense-mediated decay (NMD), and fibroblasts show elevated ferritin protein levels, markers of oxidative stress, and increased susceptibility to iron accumulation. C-terminal variants in FTH1 truncate ferritin's E helix, altering the 4-fold symmetric pores of the heteropolymer, and likely diminish iron-storage capacity. FTH1 pathogenic variants appear to act by a dominant, toxic gain-of-function mechanism. The data support the conclusion that truncating variants in the last exon of FTH1 cause a disorder in the spectrum of NBIA. Targeted knockdown of mutant FTH1 transcript with antisense oligonucleotides rescues cellular phenotypes and suggests a potential therapeutic strategy for this pediatric neurodegenerative disorder.

铁蛋白重链基因FTH1的杂合无义变体引起神经铁蛋白病。
铁蛋白是一种铁储存蛋白,由轻链和重链亚基组成,分别由FTL和FTH1编码。FTL的杂合子变体会导致遗传性神经铁蛋白病,这是一种伴有脑铁积聚的神经退行性变(NBIA)。FTH1的变异以前没有与神经系统疾病相关。我们描述了五名新发杂合子FTH1变异的无关儿科患者的临床、神经影像学和神经病理学结果。儿童表现为发育迟缓、癫痫和进行性神经功能下降。使用全外显子组测序鉴定了无义FTH1变体,在四个不相关的个体中鉴定了一个复发变体(p.Phe171*)。神经影像学显示基底节弥漫性体积损失、马尾神经发育不全和铁积聚。神经病理学显示大脑中广泛存在铁蛋白包涵体。测定患者来源的成纤维细胞的铁蛋白表达、对铁积聚的易感性和氧化应激。变体FTH1 mRNA转录物逃避无义介导的衰变(NMD),成纤维细胞表现出铁蛋白水平升高、氧化应激标志物和对铁积累的易感性增加。FTH1中的C末端变体截断了铁蛋白的E螺旋,改变了杂聚物的四重对称孔,并可能降低铁的储存能力。FTH1致病性变体似乎通过一种占主导地位的毒性功能获得机制发挥作用。数据支持这样一个结论,即FTH1最后一个外显子的截短变体会导致NBIA谱的紊乱。用反义寡核苷酸靶向敲除突变的FTH1转录物挽救了细胞表型,并为这种儿童神经退行性疾病提供了一种潜在的治疗策略。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
HGG Advances
HGG Advances Biochemistry, Genetics and Molecular Biology-Molecular Medicine
CiteScore
4.30
自引率
4.50%
发文量
69
审稿时长
14 weeks
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