首页> 外文期刊>European journal of human genetics: EJHG >Differential allelic expression of SOS1 and hyperexpression of the activating SOS1 c.755C variant in a Noonan syndrome family
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Differential allelic expression of SOS1 and hyperexpression of the activating SOS1 c.755C variant in a Noonan syndrome family

机译:Noonan综合征家族中SOS1的等位基因差异表达和激活的SOS1 c.755C变体的过表达

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Noonan syndrome (NS) is a genetic condition characterized by congenital heart defects, short stature and characteristic facial features. We here present the case of a girl with moderate learning disabilities, delayed language development, craniofacial features and skin anomalies reminiscent of NS. After a mutation screening of the known NS genes PTPN11, SOS1, RAF1, KRAS, GRB2, BRAF and SHOC2 we found the heterozygous c.755T>C variant in SOS1 causing the p.I252T amino-acid substitution, which was considered possibly pathogenetic by bioinformatic predictions. The same variant was present in the proband's mother, displaying some NS features, and maternal grandfather showing no NS traits, but also by a healthy subject in 1000 genomes project database without phenotype informations. The functional analysis revealed that SOS1 c.755C activated the RAS-ERK intracellular pathway, whereas no effects on RAC-JNK cascade have been detected. After a comparison between the sequence of SOS1 cDNA from peripheral blood and SOS1 genomic DNA, we showed for the first time a differential allelic expression of the SOS1 gene in healthy individuals, thus occurring as a physiologic condition. Interestingly, we found that the mutated allele C was 50% more expressed than the wild-type allele T in all familial carriers. The comparable amount of SOS1 mRNA between mutated individuals and the controls indicates that the variant does not affect SOS1 expression. The present study provides a first evidence of allelic imbalance of SOS1 and pinpoints this condition as a possible mechanism underlying a different penetrance of some SOS1-mutated alleles in unrelated carriers.
机译:Noonan综合征(NS)是一种遗传疾病,其特征是先天性心脏缺陷,身材矮小和特征性的面部特征。我们在这里介绍了一个中度学习障碍,语言发育延迟,颅面特征和皮肤异常让人联想到NS的女孩的情况。在对已知的NS基因PTPN11,SOS1,RAF1,KRAS,GRB2,BRAF和SHOC2进行突变筛选后,我们发现SOS1中的杂合c.755T> C变异体引起p.I252T氨基酸取代,据认为这可能是致病的生物信息学预测。先证者的母亲中存在相同的变体,显示出一些NS特征,而祖父没有显示出NS特征,但是在1000个基因组计划数据库中,健康受试者也没有表型信息。功能分析表明,SOS1 c.755C激活了RAS-ERK细胞内途径,而未检测到对RAC-JNK级联的影响。在比较了来自外周血的SOS1 cDNA序列与SOS1基因组DNA的序列之后,我们首次显示了健康个体中SOS1基因的差异等位基因表达,因此是一种生理状况。有趣的是,我们发现在所有家族携带者中,突变的等位基因C的表达量比野生型等位基因T高50%。突变个体与对照之间SOS1 mRNA的可比量表明该变体不影响SOS1表达。本研究提供了SOS1等位基因失衡的第一个证据,并指出这种情况是在不相关携带者中某些SOS1突变等位基因具有不同渗透率的潜在机制。

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