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下丘脑错构瘤的遗传学见解:解析体细胞变异

Genetic Insights Into Hypothalamic Hamartoma: Unraveling Somatic Variants.

作者信息

Sami Lina, Chipaux Mathilde, Ferrand-Sorbets Sarah, Doladilhe Marion, Bulteau Christine, Raffo Emmanuel, Rosenberg Sarah, Dorfmuller Georg, Checri Rayann, De Sainte Agathe Jean-Madeleine, Leguern Eric, Adle-Biassette Homa, Baldassari Sara, Baulac Stephanie

机构信息

From the Institut du Cerveau-Paris Brain Institute-ICM (L.S., M.D., J.-M.D.S.A., E.L., Sara Baldassari, Stephanie Baulac), Sorbonne Université, Inserm, CNRS, Hôpital de la Pitié Salpêtrière; Department of Pediatric Neurosurgery (M.C., S.F.-S., C.B., E.R., S.R., G.D., R.C.), Rothschild Foundation Hospital EPICARE; Department of Medical Genetics (J.-M.D.S.A., E.L.), AP-HP, Sorbonne Université, Hôpital de la Pitié Salpêtrière; and Université de Paris Cité (H.A.-B.), service d'Anatomie Pathologique, AP-HP, Hôpital Lariboisière, DMU DREAM, Biobank BB-0033-00064, UMR 1141, INSERM, Paris, France.

出版信息

Neurol Genet. 2024 Sep 4;10(5):e200180. doi: 10.1212/NXG.0000000000200180. eCollection 2024 Oct.

Abstract

OBJECTIVES

Hypothalamic hamartomas (HHs) are rare developmental brain lesions associated with drug-resistant epilepsy and often subjected to epilepsy surgery. Brain somatic variants in genes affecting the Sonic hedgehog (Shh) and primary cilia signaling pathways have been implicated in approximately 50% of nonsyndromic HH cases. This study aims to characterize a new cohort of 9 HH cases and elucidate their genetic etiology.

METHODS

We recruited 9 HH cases including 8 nonsyndromic cases of which 4 were type IV HH. Genomic DNA was extracted from peripheral blood and surgical brain tissues, and somatic variants were investigated using high-depth whole-exome sequencing.

RESULTS

Pathogenic somatic variants in known HH genes (, , and were identified in 7 of the 9 cases. In addition, a 2-hit mutational event comprising a germline variant (predicted to impair kinase activity) and a somatic loss-of-heterozygosity was identified in , a gene encoding a brain-expressed tyrosine kinase.

DISCUSSION

Our findings reinforce the role of somatic variants in Shh and cilia genes in HH cases while also shedding light on as a potential novel disease-causing gene. This study emphasizes the increasing importance of brain mosaicism in epilepsy disorders and underscores the critical role of genetic diagnosis derived from resected brain tissue.

摘要

目的

下丘脑错构瘤(HHs)是一种罕见的脑部发育性病变,与药物难治性癫痫相关,常需接受癫痫手术。影响 Sonic 刺猬因子(Shh)和初级纤毛信号通路的基因中的脑体细胞变异在约 50%的非综合征性 HH 病例中被发现。本研究旨在对一组新的 9 例 HH 病例进行特征描述,并阐明其遗传病因。

方法

我们招募了 9 例 HH 病例,包括 8 例非综合征性病例,其中 4 例为 IV 型 HH。从外周血和手术切除的脑组织中提取基因组 DNA,并使用高深度全外显子测序研究体细胞变异。

结果

在 9 例病例中的 7 例中鉴定出已知 HH 基因(、和)中的致病性体细胞变异。此外,在一个编码脑表达酪氨酸激酶的基因中,发现了一个由胚系变异(预测会损害激酶活性)和体细胞杂合性缺失组成的双打击突变事件。

讨论

我们的研究结果强化了体细胞变异在 HH 病例中 Shh 和纤毛基因中的作用,同时也揭示了作为潜在新致病基因的情况。本研究强调了脑镶嵌现象在癫痫疾病中的重要性日益增加,并强调了从切除的脑组织中进行基因诊断的关键作用。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/aa42/11380500/f8dbf8f57dc5/NXG-2024-100105f1.jpg

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