TOR1AIP2 as a candidate gene for dystonia-hemichorea/hemiballism

IF 3.4 3区 医学 Q2 CLINICAL NEUROLOGY Parkinsonism & related disorders Pub Date : 2025-05-01 Epub Date: 2025-03-11 DOI:10.1016/j.parkreldis.2025.107781
Efthymia Kafantari , Victoria J. Hernandez , Ján Necpál , Marina Leonidou , Regina Baureder , Carola Hedberg-Oldfors , Robert Jech , Michael Zech , Thomas U. Schwartz , Andreas Puschmann
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Abstract

Dystonia is a movement disorder characterized by genetic and clinical heterogeneity. A recurring p.(Glu303del)-deletion in TOR1A is a well-established cause for DYT-TOR1A (DYT1), an autosomal dominant early-onset isolated dystonia. TOR1A encodes TorsinA, an AAA + ATPase located in the nuclear envelope. By whole exome analyses of a family with a novel dystonia-hemichorea-/hemiballism phenotype, we identified a TOR1AIP2 NM_001199260.2 c.1234A > G p.(Arg412Gly) variant. The variant is very rare in databases and was absent from whole exome data from >1000 dystonia patients. TOR1AIP2 encodes LULL1, a transmembrane protein that activates TorsinA, and correct interaction between TorsinA and LULL1 is essential for proper nuclear envelope architecture. The p.(Arg412Gly) variant disrupts the binding interface between TorsinA and LULL1 around p.Arg412; this same interface is also impaired in DYT1. Functional analyses via a co-purification assay revealed that interaction between TorsinA-LULL1Arg412Gly is weaker than the wild-type interaction, and that it resembles the situation in DYT1 (TorsinAΔE303-LULL1). A second family with milder dystonia, hemichorea, and stereotypic leg flexion during gait and a TOR1AIP2 p.(Gln338His) variant was identified. The clinical phenotype of both families shared proximal arm movements, and flutter in facial musculature. Expressivity of the movement disorder symptoms was variable. Several proteins in the nuclear envelope have been implicated in various forms of neurodevelopmental disorders with dystonia. Taken together, our findings suggest TOR1AIP2 as a new candidate gene implicated in a complex hereditary movement disorder with dystonia and hemichorea/hemiballism.
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TOR1AIP2作为肌张力障碍-偏瘫的候选基因
肌张力障碍是一种以遗传和临床异质性为特征的运动障碍。TOR1A中反复出现的p.(Glu303del)-缺失是DYT-TOR1A (DYT1)的一个确定的原因,DYT1是一种常染色体显性早发性孤立性肌张力障碍。TOR1A编码TorsinA,这是一种位于核膜的AAA + atp酶。通过对一个具有新型肌张力障碍-偏窄/半偏瘫表型的家族的全外显子组分析,我们鉴定出TOR1AIP2基因NM_001199260.2 c.1234A >;p.(Arg412Gly)变体。该变异在数据库中非常罕见,在1000例肌张力障碍患者的全外显子组数据中也不存在。TOR1AIP2编码LULL1,这是一种激活TorsinA的跨膜蛋白,TorsinA和LULL1之间的正确相互作用对于正确的核膜结构至关重要。p.(Arg412Gly)变体破坏了p. arg412周围TorsinA和LULL1之间的结合界面;同样的接口在DYT1中也会受损。通过共纯化实验进行的功能分析显示,TorsinA-LULL1Arg412Gly之间的相互作用弱于野生型相互作用,并且与DYT1的情况相似(TorsinAΔE303-LULL1)。第二个家族在步态中具有较轻的肌张力障碍、偏窄和刻板的腿屈,并鉴定出TOR1AIP2 p.(Gln338His)变体。两个家族的临床表型都有近端手臂运动和面部肌肉的扑动。运动障碍症状的表达是可变的。核膜中的几种蛋白质与各种形式的神经发育障碍和肌张力障碍有关。综上所述,我们的研究结果表明,TOR1AIP2是一个新的候选基因,与复杂的遗传性运动障碍、肌张力障碍和血谱偏斜有关。
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来源期刊
Parkinsonism & related disorders
Parkinsonism & related disorders 医学-临床神经学
CiteScore
6.20
自引率
4.90%
发文量
292
审稿时长
39 days
期刊介绍: Parkinsonism & Related Disorders publishes the results of basic and clinical research contributing to the understanding, diagnosis and treatment of all neurodegenerative syndromes in which Parkinsonism, Essential Tremor or related movement disorders may be a feature. Regular features will include: Review Articles, Point of View articles, Full-length Articles, Short Communications, Case Reports and Letter to the Editor.
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