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通过外显子组测序鉴定出的与纯合FGFR2突变相关的缺指畸形和致死性肺腺泡发育异常

Ectrodactyly and Lethal Pulmonary Acinar Dysplasia Associated with Homozygous FGFR2 Mutations Identified by Exome Sequencing.

作者信息

Barnett Christopher P, Nataren Nathalie J, Klingler-Hoffmann Manuela, Schwarz Quenten, Chong Chan-Eng, Lee Young K, Bruno Damien L, Lipsett Jill, McPhee Andrew J, Schreiber Andreas W, Feng Jinghua, Hahn Christopher N, Scott Hamish S

机构信息

SA Clinical Genetics, Women's and Children's Hospital/SA Pathology, North Adelaide, SA, Australia.

School of Biological Sciences, University of Adelaide, SA, Australia.

出版信息

Hum Mutat. 2016 Sep;37(9):955-63. doi: 10.1002/humu.23032. Epub 2016 Jul 11.

Abstract

Ectrodactyly/split hand-foot malformation is genetically heterogeneous with more than 100 syndromic associations. Acinar dysplasia is a rare congenital lung lesion of unknown etiology, which is frequently lethal postnatally. To date, there have been no reports of combinations of these two phenotypes. Here, we present an infant from a consanguineous union with both ectrodactyly and autopsy confirmed acinar dysplasia. SNP array and whole-exome sequencing analyses of the affected infant identified a novel homozygous Fibroblast Growth Factor Receptor 2 (FGFR2) missense mutation (p.R255Q) in the IgIII domain (D3). Expression studies of Fgfr2 in development show localization to the affected limbs and organs. Molecular modeling and genetic and functional assays support that this mutation is at least a partial loss-of-function mutation, and contributes to ectrodactyly and acinar dysplasia only in homozygosity, unlike previously reported heterozygous activating FGFR2 mutations that cause Crouzon, Apert, and Pfeiffer syndromes. This is the first report of mutations in a human disease with ectrodactyly with pulmonary acinar dysplasia and, as such, homozygous loss-of-function FGFR2 mutations represent a unique syndrome.

摘要

缺指(趾)/裂手(足)畸形在遗传上具有异质性,有超过100种综合征关联。腺泡发育异常是一种病因不明的罕见先天性肺部病变,常在出生后致命。迄今为止,尚无这两种表型组合的报道。在此,我们报告一名近亲结婚所生的婴儿,其患有缺指(趾)畸形且尸检证实有腺泡发育异常。对该患病婴儿进行的单核苷酸多态性阵列分析和全外显子组测序分析在免疫球蛋白III结构域(D3)中鉴定出一种新的纯合成纤维细胞生长因子受体2(FGFR2)错义突变(p.R255Q)。Fgfr2在发育过程中的表达研究显示其定位于受影响的肢体和器官。分子建模以及遗传和功能分析支持该突变至少是一种部分功能丧失突变,并且仅在纯合状态下导致缺指(趾)畸形和腺泡发育异常,这与先前报道的导致克鲁宗综合征、阿佩尔综合征和法伊弗综合征的杂合激活型FGFR2突变不同。这是人类疾病中缺指(趾)畸形合并肺腺泡发育异常的突变的首次报道,因此,纯合功能丧失型FGFR2突变代表一种独特的综合征。

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