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外显子组测序鉴定出人类美人鱼综合征的首个遗传决定因素。

Exome sequencing identifies the first genetic determinants of sirenomelia in humans.

机构信息

Department of Genetics and Reference Center for Developmental Disorders, Normandy Center for Genomic and Personalized Medicine, Normandie Univ, UNIROUEN, Inserm U1245 and Rouen University Hospital, Rouen, France.

Department of Foetopathology, CHU Rouen, Rouen, France.

出版信息

Hum Mutat. 2020 May;41(5):926-933. doi: 10.1002/humu.23998. Epub 2020 Mar 1.

Abstract

Sirenomelia is a rare severe malformation sequence of unknown cause characterized by fused legs and severe visceral abnormalities. We present a series of nine families including two rare familial aggregations of sirenomelia investigated by a trio-based exome sequencing strategy. This approach identified CDX2 variants in the two familial aggregations, both fitting an autosomal dominant pattern of inheritance with variable expressivity. CDX2 is a major regulator of caudal development in vertebrate and mouse heterozygotes are a previously described model of sirenomelia. Remarkably, the p.(Arg237His) variant has already been reported in a patient with persistent cloaca. Analysis of the sporadic cases revealed six additional candidate variants including a de novo frameshift variant in the genetically constrained NKD1 gene, encoding a known interactor of CDX2. We provide the first insights for a genetic contribution in human sirenomelia and highlight the role of Cdx and Wnt signaling pathways in the development of this disorder.

摘要

并腿畸形是一种罕见的严重畸形序列,病因不明,其特征为腿部融合和严重的内脏异常。我们报告了一系列 9 个家系的病例,其中包括 2 例罕见的并腿畸形家族聚集性病例,采用基于 trio 的外显子组测序策略进行了研究。该方法在这两个家族聚集性病例中鉴定出 CDX2 变异,均符合常染色体显性遗传模式,具有可变外显率。CDX2 是脊椎动物尾部发育的主要调节因子,杂合子小鼠是先前描述的并腿畸形模型。值得注意的是,p.(Arg237His)变异已在一名持续性泄殖腔患者中报道。对散发性病例的分析揭示了另外 6 个候选变异,包括编码 CDX2 已知相互作用物的 NKD1 基因中的从头移码变异。我们为人类并腿畸形的遗传贡献提供了第一个见解,并强调了 Cdx 和 Wnt 信号通路在该疾病发展中的作用。

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