A Case of Congenital Hypotonia and Developmental Delay in an Individual with a De Novo Variant Outside of the Canonical HX-Motif of ATN1.

Elizaveta Makarova, Nicole R Legro, Ermal Aliu
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Abstract

We present a case of a 4-year-old female with a de novo heterozygous variant in the ATN1 gene. The whole exome sequencing was performed on the patient and her parents, and a likely pathogenic, de novo variant was identified in exon 5 of the ATN1 gene. There are two well-documented conditions associated with the ATN1 gene: congenital hypotonia, epilepsy, developmental delay, and digital anomalies (CHEDDA) syndrome and dentatorubral-pallidoluysian atrophy (DRPLA). Unlike DRPLA which is caused by an expanded trinucleotide repeat, CHEDDA syndrome is caused by variants in the histidine-rich (HX) motif at exon 7 of ATN1 similar to the de novo variant found in exon 5 of the presented individual. CHEDDA syndrome is a neurodevelopmental disorder previously documented in over 17 unrelated individuals. Compared to other documented CHEDDA syndrome cases, this individual shares similarities in respect to hypotonia, hearing impairment, impaired gross and fine motor ability, gastrointestinal abnormalities, hyperextensible joints, and frontal bossing. However, the individual presented here has only a moderate developmental delay and has acquired more developmental milestones such as higher-level language skills and more developed fine motor skills, than previously described individuals. The authors of this paper believe the patient's milder phenotype may be due to the variant's location outside of the canonic HX motif.

Abstract Image

ATN1标准hx基序外的新生变异个体的先天性张力低下和发育迟缓1例。
我们提出了一例4岁的女性与ATN1基因的新杂合变异体。对患者及其父母进行了全外显子组测序,在ATN1基因的外显子5中发现了可能的致病性新生变异。有两种与ATN1基因相关的充分记录的疾病:先天性张力低下、癫痫、发育迟缓、指端异常(CHEDDA)综合征和齿状小脑-白斑萎缩(DRPLA)。与由扩大的三核苷酸重复引起的DRPLA不同,CHEDDA综合征是由ATN1外显子7富含组氨酸(HX)基序的变异引起的,类似于在该个体的外显子5中发现的新变异。CHEDDA综合征是一种神经发育障碍,以前在17个不相关的个体中记录过。与其他记录的CHEDDA综合征病例相比,该患者在张力不足、听力障碍、粗大和精细运动能力受损、胃肠道异常、关节过度伸展和额部凸起等方面具有相似之处。然而,与之前描述的个体相比,这里的个体只有适度的发展迟缓,并且获得了更多的发展里程碑,如更高水平的语言技能和更发达的精细运动技能。这篇论文的作者认为,患者较温和的表型可能是由于变异的位置在经典的HX基序之外。
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