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下丘脑错构瘤中 hedgehog 信号通路和其他纤毛基因的脑镶嵌现象。

Brain mosaicism of hedgehog signalling and other cilia genes in hypothalamic hamartoma.

机构信息

Epilepsy Research Centre, Department of Medicine, The University of Melbourne, Austin Health, Heidelberg, Victoria 3084, Australia.

Department of Human Genetics, Yokohama City University Graduate School of Medicine, Yokohama 236-0004, Japan.

出版信息

Neurobiol Dis. 2023 Sep;185:106261. doi: 10.1016/j.nbd.2023.106261. Epub 2023 Aug 12.

Abstract

Hypothalamic hamartoma (HH) is a rare benign developmental brain lesion commonly associated with a well characterized epilepsy phenotype. Most individuals with HH are non-syndromic without additional developmental anomalies nor a family history of disease. Nonetheless, HH is a feature of Pallister-Hall (PHS) and Oro-Facial-Digital Type VI (OFD VI) syndromes, both characterized by additional developmental anomalies. Initial genetic of analysis HH began with syndromic HH, where germline inherited or de novo variants in GLI3, encoding a central transcription factor in the sonic hedgehog (Shh) signalling pathway, were identified in most individuals with PHS. Following these discoveries in syndromic HH, the hypothesis that post-zygotic mosaicism in related genes may underly non-syndromic HH was tested. We discuss the identified mosaic variants within individuals with non-syndromic HH, review the analytical methodologies and diagnostic yields, and explore understanding of the functional role of the implicated genes with respect to Shh signalling, and cilia development and function. We also outline future challenges in studying non-syndromic HH and suggest potential novel strategies to interrogate brain mosaicism in HH.

摘要

下丘脑错构瘤(HH)是一种罕见的良性发育性脑病变,通常与一种具有特征性癫痫表型相关。大多数 HH 患者为非综合征型,无其他发育异常,也无家族疾病史。然而,HH 是 Pallister-Hall 综合征(PHS)和 Oro-Facial-Digital 综合征 VI 型(OFD VI)的特征之一,这两种综合征均伴有其他发育异常。HH 的最初遗传学分析始于综合征性 HH,在大多数 PHS 患者中,发现了 GLI3 的种系遗传或新生变异,该基因编码 Sonic hedgehog(Shh)信号通路中的核心转录因子。在这些综合征性 HH 的发现之后,人们提出了一个假说,即在相关基因中存在合子后镶嵌现象可能是导致非综合征性 HH 的原因。我们讨论了非综合征性 HH 患者个体中的镶嵌变异,回顾了分析方法和诊断结果,并探讨了涉及的基因在 Shh 信号转导、纤毛发育和功能方面的功能作用的理解。我们还概述了研究非综合征性 HH 的未来挑战,并提出了潜在的新策略来研究 HH 中的脑镶嵌现象。

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