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在编码细胞质 FMRP 相互作用蛋白 2 的 CYFIP2 中,新出现的变异呈空间聚集性,导致智力残疾和癫痫发作。

Spatially clustering de novo variants in CYFIP2, encoding the cytoplasmic FMRP interacting protein 2, cause intellectual disability and seizures.

机构信息

Institute of Medical Genetics, University of Zurich, Schlieren-Zurich, Switzerland.

Radiz-Rare Disease Initiative Zurich, Clinical Research Priority Program for Rare Diseases, University of Zurich, Zurich, Switzerland.

出版信息

Eur J Hum Genet. 2019 May;27(5):747-759. doi: 10.1038/s41431-018-0331-z. Epub 2019 Jan 21.

Abstract

CYFIP2, encoding the evolutionary highly conserved cytoplasmic FMRP interacting protein 2, has previously been proposed as a candidate gene for intellectual disability and autism because of its important role linking FMRP-dependent transcription regulation and actin polymerization via the WAVE regulatory complex (WRC). Recently, de novo variants affecting the amino acid p.Arg87 of CYFIP2 were reported in four individuals with epileptic encephalopathy. We here report 12 independent patients harboring a variety of de novo variants in CYFIP2 broadening the molecular and clinical spectrum of a novel CYFIP2-related neurodevelopmental disorder. Using trio whole-exome or -genome sequencing, we identified 12 independent patients carrying a total of eight distinct de novo variants in CYFIP2 with a shared phenotype of intellectual disability, seizures, and muscular hypotonia. We detected seven different missense variants, of which two occurred recurrently (p.(Arg87Cys) and p.(Ile664Met)), and a splice donor variant in the last intron for which we showed exon skipping in the transcript. The latter is expected to escape nonsense-mediated mRNA decay resulting in a truncated protein. Despite the large spacing in the primary structure, the variants spatially cluster in the tertiary structure and are all predicted to weaken the interaction with WAVE1 or NCKAP1 of the actin polymerization regulating WRC-complex. Preliminary genotype-phenotype correlation indicates a profound phenotype in p.Arg87 substitutions and a more variable phenotype in other alterations. This study evidenced a variety of de novo variants in CYFIP2 as a novel cause of mostly severe intellectual disability with seizures and muscular hypotonia.

摘要

CYFIP2 编码进化上高度保守的细胞质 FMRP 相互作用蛋白 2,由于其通过 WAVE 调节复合物 (WRC) 连接 FMRP 依赖性转录调节和肌动蛋白聚合的重要作用,先前被提议为智力残疾和自闭症的候选基因。最近,在四名患有癫痫性脑病的个体中报道了影响 CYFIP2 氨基酸 p.Arg87 的从头变异。我们在此报告了 12 名独立的患者,他们在 CYFIP2 中携带各种从头变异,从而拓宽了一种新型 CYFIP2 相关神经发育障碍的分子和临床谱。使用三体系外显子组或基因组测序,我们鉴定了 12 名独立的患者,他们总共携带 CYFIP2 中的八种不同的从头变异,具有智力残疾、癫痫发作和肌肉张力减退的共同表型。我们检测到七个不同的错义变异,其中两个反复发生(p.(Arg87Cys) 和 p.(Ile664Met)),最后一个内含子中的剪接供体位点,我们在转录本中检测到外显子跳跃。预计后者会逃避无意义介导的 mRNA 衰变,导致截短的蛋白质。尽管一级结构的间距很大,但变体在三级结构中空间聚集,并且都预计会削弱与 WRC 复合物中肌动蛋白聚合调节的 WAVE1 或 NCKAP1 的相互作用。初步的基因型-表型相关性表明 p.Arg87 取代的表型非常严重,而其他改变的表型则更为多变。本研究证明了 CYFIP2 中的各种从头变异是一种新的原因,主要导致伴有癫痫发作和肌肉张力减退的严重智力残疾。

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