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Transcriptional Hallmarks of Noonan Syndrome and Noonan-Like Syndrome with Loose Anagen Hair

机译:牛毛稀少的Noonan综合征和Noonan-Like综合征的转录特征

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摘要

Noonan syndrome (NS) is among the most common nonchromosomal disorders affecting development and growth. NS is genetically heterogeneous, being caused by germline mutations affecting various genes implicated in the RAS signaling network. This network transduces extracellular signals into intracellular biochemical and transcriptional responses controlling cell proliferation, differentiation, metabolism, and senescence. To explore the transcriptional consequences of NS-causing mutations, we performed global mRNA expression profiling on peripheral blood mononuclear cells obtained from 23 NS patients carrying heterozygous mutations in PTPN11 or SOS1. Gene expression profiling was also resolved in five subjects with Noonan-like syndrome with loose anagen hair (NS/LAH), a condition clinically related to NS and caused by an invariant mutation in SHOC2. Robust transcriptional signatures were found to specifically discriminate each of the three mutation groups from 21 age- and sex-matched controls. Despite the only partial overlap in terms of gene composition, the three signatures showed a notable concordance in terms of biological processes and regulatory circuits affected. These data establish expression profiling of peripheral blood mononuclear cells as a powerful tool to appreciate differential perturbations driven by germline mutations of transducers involved in RAS signaling and to dissect molecular mechanisms underlying NS and other RASopathies. Hum Mutat 33:703–709, 2012. © 2012 Wiley Periodicals, Inc.
机译:Noonan综合征(NS)是影响发育和生长的最常见的非染色体疾病。 NS是遗传异质的,是由影响RAS信号网络中涉及的各种基因的种系突变引起的。该网络将细胞外信号转换为控制细胞增殖,分化,代谢和衰老的细胞内生化和转录反应。为了探讨NS致突变的转录结果,我们对23名携带PTPN11或SOS1杂合突变的NS患者获得的外周血单核细胞进行了全局mRNA表达谱分析。基因表达谱在五名患有Noanan样综合征,长毛过长的毛发(NS / LAH)的患者中也得到解决,这是一种与NS临床相关的疾病,由SHOC2的恒定突变引起。发现强大的转录特征可以将21个年龄和性别匹配的对照组中的三个突变组分别区分开。尽管在基因组成方面仅有部分重叠,但是这三个签名在生物学过程和受影响的调节回路方面显示出显着的一致性。这些数据建立了外周血单核细胞的表达谱,成为了解由参与RAS信号传导的换能器的种系突变驱动的差异扰动以及剖析NS和其他RASopathies的分子机制的有力工具。嗡嗡声Mutat 33:703–709,2012.©2012 Wiley Periodicals,Inc.

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