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剪接体成分CWC27中的突变会导致伴有或不伴有其他发育异常的视网膜变性。

Mutations in the Spliceosome Component CWC27 Cause Retinal Degeneration with or without Additional Developmental Anomalies.

作者信息

Xu Mingchu, Xie Yajing Angela, Abouzeid Hana, Gordon Christopher T, Fiorentino Alessia, Sun Zixi, Lehman Anna, Osman Ihab S, Dharmat Rachayata, Riveiro-Alvarez Rosa, Bapst-Wicht Linda, Babino Darwin, Arno Gavin, Busetto Virginia, Zhao Li, Li Hui, Lopez-Martinez Miguel A, Azevedo Liliana F, Hubert Laurence, Pontikos Nikolas, Eblimit Aiden, Lorda-Sanchez Isabel, Kheir Valeria, Plagnol Vincent, Oufadem Myriam, Soens Zachry T, Yang Lizhu, Bole-Feysot Christine, Pfundt Rolph, Allaman-Pillet Nathalie, Nitschké Patrick, Cheetham Michael E, Lyonnet Stanislas, Agrawal Smriti A, Li Huajin, Pinton Gaëtan, Michaelides Michel, Besmond Claude, Li Yumei, Yuan Zhisheng, von Lintig Johannes, Webster Andrew R, Le Hir Hervé, Stoilov Peter, Amiel Jeanne, Hardcastle Alison J, Ayuso Carmen, Sui Ruifang, Chen Rui, Allikmets Rando, Schorderet Daniel F

机构信息

Department of Molecular and Human Genetics, Baylor College of Medicine, Houston, TX 77030, USA; Human Genome Sequencing Center, Baylor College of Medicine, Houston, TX 77030, USA.

Department of Ophthalmology, Columbia University, New York, NY 10032, USA.

出版信息

Am J Hum Genet. 2017 Apr 6;100(4):592-604. doi: 10.1016/j.ajhg.2017.02.008. Epub 2017 Mar 9.

Abstract

Pre-mRNA splicing factors play a fundamental role in regulating transcript diversity both temporally and spatially. Genetic defects in several spliceosome components have been linked to a set of non-overlapping spliceosomopathy phenotypes in humans, among which skeletal developmental defects and non-syndromic retinitis pigmentosa (RP) are frequent findings. Here we report that defects in spliceosome-associated protein CWC27 are associated with a spectrum of disease phenotypes ranging from isolated RP to severe syndromic forms. By whole-exome sequencing, recessive protein-truncating mutations in CWC27 were found in seven unrelated families that show a range of clinical phenotypes, including retinal degeneration, brachydactyly, craniofacial abnormalities, short stature, and neurological defects. Remarkably, variable expressivity of the human phenotype can be recapitulated in Cwc27 mutant mouse models, with significant embryonic lethality and severe phenotypes in the complete knockout mice while mice with a partial loss-of-function allele mimic the isolated retinal degeneration phenotype. Our study describes a retinal dystrophy-related phenotype spectrum as well as its genetic etiology and highlights the complexity of the spliceosomal gene network.

摘要

前体mRNA剪接因子在时空上调节转录本多样性方面发挥着重要作用。几种剪接体成分的基因缺陷与人类一组不重叠的剪接体病表型相关,其中骨骼发育缺陷和非综合征性视网膜色素变性(RP)是常见的表现。在此,我们报告剪接体相关蛋白CWC27的缺陷与一系列疾病表型相关,从孤立性RP到严重的综合征形式。通过全外显子组测序,在7个无亲缘关系的家族中发现了CWC27的隐性蛋白截短突变,这些家族表现出一系列临床表型,包括视网膜变性、短指畸形、颅面异常、身材矮小和神经缺陷。值得注意的是,人类表型的可变表达性可以在Cwc27突变小鼠模型中重现,完全敲除小鼠具有显著的胚胎致死率和严重表型,而具有部分功能丧失等位基因的小鼠则模拟孤立性视网膜变性表型。我们的研究描述了一种与视网膜营养不良相关的表型谱及其遗传病因,并突出了剪接体基因网络的复杂性。

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