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新型 NR5A1 变体的功能特征揭示了其在性别发育障碍中的多种复杂作用。

Functional characterization of novel NR5A1 variants reveals multiple complex roles in disorders of sex development.

机构信息

Murdoch Children's Research Institute, Melbourne, Australia.

Royal Children's Hospital, Melbourne, Australia.

出版信息

Hum Mutat. 2018 Jan;39(1):124-139. doi: 10.1002/humu.23354. Epub 2017 Nov 2.

Abstract

Variants in the NR5A1 gene encoding SF1 have been described in a diverse spectrum of disorders of sex development (DSD). Recently, we reported the use of a targeted gene panel for DSD where we identified 15 individuals with a variant in NR5A1, nine of which are novel. Here, we examine the functional effect of these changes in relation to the patient phenotype. All novel variants tested had reduced trans-activational activity, while several had altered protein level, localization, or conformation. In addition, we found evidence of new roles for SF1 protein domains including a region within the ligand binding domain that appears to contribute to SF1 regulation of Müllerian development. There was little correlation between the severity of the phenotype and the nature of the NR5A1 variant. We report two familial cases of NR5A1 deficiency with evidence of variable expressivity; we also report on individuals with oligogenic inheritance. Finally, we found that the nature of the NR5A1 variant does not inform patient outcomes (including pubertal androgenization and malignancy risk). This study adds nine novel pathogenic NR5A1 variants to the pool of diagnostic variants. It highlights a greater need for understanding the complexity of SF1 function and the additional factors that contribute.

摘要

NR5A1 基因编码 SF1 的变异已在多种性别发育障碍 (DSD) 中被描述。最近,我们报告了使用针对 DSD 的靶向基因 panel 的情况,在其中我们鉴定出 15 名 NR5A1 变异的个体,其中 9 个是新的。在这里,我们研究了这些变化与患者表型的关系的功能影响。所有测试的新变体均显示出转录激活活性降低,而一些变体则改变了蛋白水平、定位或构象。此外,我们发现了 SF1 蛋白结构域的新作用的证据,包括配体结合结构域内的一个区域,该区域似乎有助于 SF1 对 Müllerian 发育的调节。表型的严重程度与 NR5A1 变体的性质之间几乎没有相关性。我们报告了两个具有可变表达性的 NR5A1 缺陷的家族病例;我们还报告了具有寡基因遗传的个体。最后,我们发现 NR5A1 变体的性质并不能告知患者的预后(包括青春期雄激素化和恶性风险)。本研究将九个新的致病性 NR5A1 变体添加到诊断变体池中。它突出表明需要更好地了解 SF1 功能的复杂性以及促成这种复杂性的其他因素。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/c355/5765430/e609b67484d1/HUMU-39-124-g001.jpg

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