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新型从头RALA错义变体扩展了海特-诺伊-库珀神经发育综合征的基因型谱。

Novel De Novo RALA Missense Variants Expand the Genotype Spectrum of Hiatt-Neu-Cooper Neurodevelopmental Syndrome.

作者信息

Dainelli Alice, Nosrati Mohammad Sadegh Shams, Romano Ferruccio, Vercellino Fabiana, Mancardi Maria Margherita, Torella Annalaura, Nigro Vincenzo, Capra Valeria, Zara Federico, Scala Marcello

机构信息

Department of Neuroscience, Rehabilitation, Ophthalmology, Genetics, Maternal and Child Health (DINOGMI), University of Genoa, Genoa, Italy.

Medical Genetics Unit, IRCCS Istituto Giannina Gaslini, Genoa, Italy.

出版信息

Mol Genet Genomic Med. 2025 Feb;13(2):e70072. doi: 10.1002/mgg3.70072.

Abstract

BACKGROUND

RALA is a small GTPase from the RAS superfamily implicated in signal transduction and cytoskeletal dynamics. Recently, de novo variants in RALA have been associated with a neurodevelopmental syndrome characterized by intellectual disability (ID), developmental delay (DD), and seizures. So far, only < 12 patients have been reported.

METHODS

In this study, we report two novel patients with neurodevelopmental impairment and epilepsy carrying previously unreported RALA variants. We performed a thorough clinical investigation of these patients and performed brain MRI to detect potential abnormalities. Trio-exome sequencing and/or NGS panel testing were conducted to identify the genetic variants. Then, we reviewed previous cases reported in the literature.

RESULTS

Affected individuals showed a complex neurodevelopmental phenotype consistent with Hiatt-Neu-Cooper neurodevelopmental syndrome. Brain MRI in both subjects showed abnormalities including megalencephaly and ventricular enlargement, previously unreported in RALA patients. Genetic testing revealed two novel de novo missense variants in RALA: c.217G>A, p.(Glu73Lys) in case #1 and c.73G>C, p.(Val25Leu) in case #2. Both variants affect highly conserved residues within the GTP/GDP-binding site of the protein. These changes are predicted to be deleterious by in silico tools, interfering with the GTPase activity of RALA.

CONCLUSION

Our findings expand the genotype and phenotype spectrum of Hiatt-Neu-Cooper neurodevelopmental syndrome. Our observations also support the important role of variants affecting the GTP/GDP-binding site of the RALA protein in the pathogenesis of Hiatt-Neu-Cooper neurodevelopmental syndrome.

摘要

背景

RALA是一种来自RAS超家族的小GTP酶,参与信号转导和细胞骨架动力学。最近,RALA中的新生变异与一种以智力残疾(ID)、发育迟缓(DD)和癫痫发作为特征的神经发育综合征相关。到目前为止,仅报告了不到12例患者。

方法

在本研究中,我们报告了两名患有神经发育障碍和癫痫的新患者,他们携带先前未报道的RALA变异。我们对这些患者进行了全面的临床调查,并进行了脑部MRI检查以检测潜在异常。进行了三联外显子组测序和/或NGS panel检测以鉴定基因变异。然后,我们回顾了文献中报道的先前病例。

结果

受影响个体表现出与Hiatt-Neu-Cooper神经发育综合征一致的复杂神经发育表型。两名受试者的脑部MRI均显示异常,包括巨头畸形和脑室扩大,这在RALA患者中先前未被报道。基因检测在RALA中发现了两个新的新生错义变异:病例1中的c.217G>A,p.(Glu73Lys)和病例2中的c.73G>C,p.(Val25Leu)。这两个变异均影响该蛋白GTP/GDP结合位点内的高度保守残基。通过计算机工具预测这些变化具有有害性,会干扰RALA的GTP酶活性。

结论

我们的发现扩展了Hiatt-Neu-Cooper神经发育综合征的基因型和表型谱。我们的观察结果还支持影响RALA蛋白GTP/GDP结合位点的变异在Hiatt-Neu-Cooper神经发育综合征发病机制中的重要作用。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/29fd/11803908/31771add0476/MGG3-13-e70072-g001.jpg

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