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一个先天性心脏缺陷、椎体异常和桡侧多趾家族中 ETV2 的双等位基因突变。

Biallelic variants in ETV2 in a family with congenital heart defects, vertebral abnormalities and preaxial polydactyly.

机构信息

Raphael Recanati Genetic Institute, Rabin Medical Center - Beilinson Hospital, Petach Tikva, Israel; Pediatric Genetics Clinic, Schneider Children's Medical Center of Israel, Petach Tikva, Israel; Sackler Faculty of Medicine, Tel Aviv University, Tel Aviv, Israel; Felsenstein Medical Research Center, Petach Tikva, Israel.

Raphael Recanati Genetic Institute, Rabin Medical Center - Beilinson Hospital, Petach Tikva, Israel.

出版信息

Eur J Med Genet. 2021 Feb;64(2):104124. doi: 10.1016/j.ejmg.2020.104124. Epub 2021 Jan 8.

Abstract

The combination of congenital heart defects and vertebral anomalies with or without additional abnormalities has been reported in many genetic disorders. We describe a family in which four consecutive pregnancies were characterized by the combination of fetal congenital heart malformations and vertebral anomalies. In addition, preaxial polydactyly was detected in one of the fetuses. Reanalysis of the non-diagnostic clinical exome data revealed compound heterozygous variants c.350del, p.(Gly117AlafsTer90) and c.757G > T, p.(Asp253Tyr) in ETV2 which have previously not been known to be associated with a phenotype in humans. In mice, Etv2 encodes an obligatory transcription factor involved in the generation of hematopoietic and endothelial cells. Its homozygous disruption results in embryonic lethality due to severe blood and vessel defects. The Etv2 promoter may be bound by Nkx2-5, a key transcription factor in heart development. Pathogenic variants in the NKx2-5 homolog in humans (NKX2-5) are related to congenital heart defects. The identification of additional fetuses or live-born individuals with biallelic pathogenic variants in ETV2 will shed further light on this presumably novel gene-phenotype association and on the full phenotypic spectrum.

摘要

已有许多遗传疾病报道了先天性心脏缺陷和脊椎异常与其他异常的组合。我们描述了一个连续四胎均具有胎儿先天性心脏畸形和脊椎异常的家族。此外,其中一个胎儿还检测到了前轴多指畸形。对非诊断性临床外显子组数据的重新分析显示,ETV2 中的复合杂合变体 c.350del,p.(Gly117AlafsTer90)和 c.757G>T,p.(Asp253Tyr)以前与人类表型无关。在小鼠中,Etv2 编码一个必需的转录因子,参与造血和内皮细胞的生成。其纯合缺失导致胚胎致死,原因是严重的血液和血管缺陷。Etv2 启动子可能被心脏发育的关键转录因子 Nkx2-5 结合。人类 NKx2-5 同源物(NKX2-5)中的致病性变异与先天性心脏缺陷有关。在 ETV2 中鉴定出其他具有双等位基因致病性变异的胎儿或活产儿将进一步阐明这一推测的新基因-表型关联以及完整的表型谱。

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