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单基因性 DSD 形式:更新。

Monogenic Forms of DSD: An Update.

机构信息

Human Developmental Genetics, Institut Pasteur, Paris, France.

出版信息

Horm Res Paediatr. 2023;96(2):144-168. doi: 10.1159/000521381. Epub 2021 Dec 28.

Abstract

BACKGROUND

DSD encompass a wide range of pathologies that impact gonad formation, development, and function in both 46,XX and 46,XY individuals. The majority of these conditions are considered to be monogenic, although the expression of the phenotype may be influenced by genetic modifiers. Although considered monogenic, establishing the genetic etiology in DSD has been difficult compared to other congenital disorders for a number of reasons including the absence of family cases for classical genetic association studies and the lack of evolutionary conservation of key genetic factors involved in gonad formation. In recent years, the widespread use of genomic sequencing technologies has resulted in multiple genes being identified and proposed as novel monogenic causes of 46,XX and/or 46,XY DSD.

SUMMARY

In this review, we will focus on the main genomic findings of recent years, which consists of new candidate genes or loci for DSD as well as new reproductive phenotypes associated with genes that are well established to cause DSD. For each gene or loci, we summarize the data that are currently available in favor of or against a role for these genes in DSD or the contribution of genomic variants within well-established genes to a new reproductive phenotype.

KEY MESSAGES

Based on this analysis, we propose a series of recommendations that should aid the interpretation of genomic data and ultimately help to improve the accuracy and yield genetic diagnosis of DSD.

摘要

背景

DSD 涵盖了广泛的病理学,这些病理学影响 46,XX 和 46,XY 个体的性腺形成、发育和功能。这些疾病大多数被认为是单基因的,尽管表型的表达可能受到遗传修饰物的影响。尽管被认为是单基因的,但与其他先天性疾病相比,DSD 的遗传病因学确定一直很困难,原因包括经典遗传关联研究中缺乏家族病例,以及参与性腺形成的关键遗传因素缺乏进化保守性。近年来,基因组测序技术的广泛应用导致了多个基因的鉴定,并被提出作为 46,XX 和/或 46,XY DSD 的新单基因原因。

摘要

在这篇综述中,我们将重点介绍近年来的主要基因组发现,这些发现包括 DSD 的新候选基因或基因座,以及与已确立的导致 DSD 的基因相关的新生殖表型。对于每个基因或基因座,我们总结了目前有利于或不利于这些基因在 DSD 中作用的数据,或者在已确立的基因内的基因组变异对新生殖表型的贡献。

关键信息

基于此分析,我们提出了一系列建议,这些建议应该有助于解释基因组数据,并最终有助于提高 DSD 遗传诊断的准确性和效率。

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