Skorczyk-Werner Anna, Chiang Wei-Chieh, Wawrocka Anna, Wicher Katarzyna, Jarmuż-Szymczak Małgorzata, Kostrzewska-Poczekaj Magdalena, Jamsheer Aleksander, Płoski Rafał, Rydzanicz Małgorzata, Pojda-Wilczek Dorota, Weisschuh Nicole, Wissinger Bernd, Kohl Susanne, Lin Jonathan H, Krawczyński Maciej R
Department of Medical Genetics, Poznan University of Medical Sciences, Poznan, Poland.
Department of Pathology, University of California, San Diego, La Jolla, CA, USA.
Eur J Hum Genet. 2017 Nov;25(11):1210-1216. doi: 10.1038/ejhg.2017.131. Epub 2017 Aug 16.
Inherited retinal dystrophies (IRDs) are clinically and genetically highly heterogeneous, making clinical diagnosis difficult. The advances in high-throughput sequencing (ie, panel, exome and genome sequencing) have proven highly effective on defining the molecular basis of these disorders by identifying the underlying variants in the respective gene. Here we report two siblings affected by an IRD phenotype and a novel homozygous c.1691A>G (p.(Asp564Gly)) ATF6 (activating transcription factor 6A) missense substitution identified by whole exome sequencing analysis. The pathogenicity of the variant was confirmed by functional analyses done on patients' fibroblasts and on recombinant p.(Asp564Gly) protein. The ATF6 variant shows impaired production of the ATF6 cleaved transcriptional activator domain in response to endoplasmic reticulum stress. Detailed phenotypic examination revealed extinguished cone responses but also decreased rod responses together with the ability to discriminate some colours suggestive rather for cone-rod dystrophy than achromatopsia.
遗传性视网膜营养不良(IRDs)在临床和遗传方面具有高度异质性,这使得临床诊断变得困难。高通量测序(即基因panel测序、外显子组测序和基因组测序)的进展已证明,通过识别各自基因中的潜在变异,在确定这些疾病的分子基础方面非常有效。在此,我们报告了两名患有IRD表型的同胞,并通过全外显子组测序分析鉴定出一种新的纯合c.1691A>G(p.(Asp564Gly))ATF6(激活转录因子6A)错义替代。通过对患者成纤维细胞和重组p.(Asp564Gly)蛋白进行功能分析,证实了该变异的致病性。ATF6变异体显示,在内质网应激反应中,ATF6裂解转录激活域的产生受损。详细的表型检查显示,视锥细胞反应消失,但视杆细胞反应也降低,同时具有辨别某些颜色的能力,提示更像是锥杆营养不良而非全色盲。