A Novel RHEB Germline Variant Associated With Intellectual Disability and Epilepsy: Expanding the Spectrum of mTORopathies.

IF 2.9 3区 医学 Q2 GENETICS & HEREDITY
Juan Pablo Trujillo-Quintero, Anna Brunet-Vega, Nino Spataro, Joan Petanas, Oriol Gallego, Francesca Mateo, Miquel Angel Pujana, Anna Ruiz
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引用次数: 0

Abstract

The mTOR cascade is a critical player in the pathogenesis of focal epilepsies and cortical malformations, collectively referred to as mTORopathies. The Ras homolog enriched in brain (RHEB) gene is a member of the RAS-family GTPases and a potent activator of the mechanistic target of rapamycin complex (mTORC1). Brain somatic variants in the RHEB gene have been described in patients affected by focal cortical dysplasia and hemimegalencephaly abnormalities. Conversely, germline genetic variants in the RHEB gene have been poorly reported in patients with neurodevelopmental disorders. This study describes the phenotype of a patient with global developmental delay and epilepsy carrying a novel germline de novo heterozygous missense variant (c.71 T>C; p.Ile24Thr) in the RHEB gene. Previously reported patients are reviewed and compared to the case reported here, expanding the genotype and phenotype spectrum of mTORopathies.

与智力残疾和癫痫相关的一种新的RHEB种系变异:扩大了肿瘤的范围。
mTOR级联在局灶性癫痫和皮层畸形(统称为mtoropathy)的发病机制中起关键作用。脑内富集的Ras同源基因(RHEB)是Ras家族GTPases的一员,是雷帕霉素复合物(mTORC1)机制靶点的有效激活剂。在局灶性皮质发育不良和半巨脑畸形患者中,已经描述了RHEB基因的脑体细胞变异。相反,RHEB基因的种系遗传变异在神经发育障碍患者中报道较少。本研究描述了一名患有全面发育迟缓和癫痫的患者的表型,该患者携带一种新的种系新生杂合错义变异(C .71 T>C;p.Ile24Thr)在RHEB基因中的表达。回顾了先前报道的患者,并与本文报道的病例进行了比较,扩大了肿瘤的基因型和表型谱。
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来源期刊
Clinical Genetics
Clinical Genetics 医学-遗传学
CiteScore
6.50
自引率
0.00%
发文量
175
审稿时长
3-8 weeks
期刊介绍: Clinical Genetics links research to the clinic, translating advances in our understanding of the molecular basis of genetic disease for the practising clinical geneticist. The journal publishes high quality research papers, short reports, reviews and mini-reviews that connect medical genetics research with clinical practice. Topics of particular interest are: • Linking genetic variations to disease • Genome rearrangements and disease • Epigenetics and disease • The translation of genotype to phenotype • Genetics of complex disease • Management/intervention of genetic diseases • Novel therapies for genetic diseases • Developmental biology, as it relates to clinical genetics • Social science research on the psychological and behavioural aspects of living with or being at risk of genetic disease
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