病例报告:一种新的CDC42错义变异与眼结肠瘤的关联,CDC42是小GTPases的Rho家族成员。

IF 2.3 3区 医学 Q2 GENETICS & HEREDITY
Diana Brightman, Nawaal Shinwari, Aleksey Porollo, Eniolami O Dosunmu, Ehsan Ullah, Bin Guan, Robert B Hufnagel, Brian P Brooks, Delphine Blain, Sabine Fuhrmann, Brittany Simpson, Anne M Slavotinek
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引用次数: 0

摘要

我们报告一名两岁男童,患有双侧虹膜及脉络膜视网膜结肠瘤、言语迟缓及面部及手指畸形。三人外显子组测序显示,CDC42中有一个新的杂合变异c.379G> a . p.Glu127Lys,诊断为Takenouchi-Kosaki综合征。p.Glu127Lys变体与先前指定的CDC42突变类别不位于同一区域,并且预计患者的错义替换会破坏CDC42与Collybistin II和IQGAP1的相互作用。由于条件敲除小鼠模型已经证明结肠瘤与Cdc42表达缺失相关,我们得出结论,结肠瘤可归因于Cdc42变异,未来可能会用其他Rho gtpase描述类似的眼部异常。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Case Report: Association of Ocular Colobomas With a Novel Missense Variant in CDC42, a Member of the Rho Family of Small GTPases.

We present a 2-year-old male with bilateral iris and chorioretinal colobomas, speech delays, and facial and digital anomalies. Trio exome sequencing demonstrated a de novo, novel heterozygous variant, c.379G>A p.Glu127Lys in CDC42, conferring a diagnosis of Takenouchi-Kosaki syndrome. The p.Glu127Lys variant was not located in the same region as previously designated mutation classes for CDC42, and the patient's missense substitution was predicted to disrupt CDC42 interactions with Collybistin II and IQGAP1. As conditional knock-out mouse models have demonstrated coloboma in association with loss of Cdc42 expression, we conclude that the colobomas can be attributed to the CDC42 variant and that similar ocular anomalies are likely to be described with other Rho GTPases in the future.

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来源期刊
Clinical Genetics
Clinical Genetics 医学-遗传学
CiteScore
6.50
自引率
0.00%
发文量
175
审稿时长
3-8 weeks
期刊介绍: Clinical Genetics links research to the clinic, translating advances in our understanding of the molecular basis of genetic disease for the practising clinical geneticist. The journal publishes high quality research papers, short reports, reviews and mini-reviews that connect medical genetics research with clinical practice. Topics of particular interest are: • Linking genetic variations to disease • Genome rearrangements and disease • Epigenetics and disease • The translation of genotype to phenotype • Genetics of complex disease • Management/intervention of genetic diseases • Novel therapies for genetic diseases • Developmental biology, as it relates to clinical genetics • Social science research on the psychological and behavioural aspects of living with or being at risk of genetic disease
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