首页> 外文期刊>Proceedings of the National Academy of Sciences of the United States of America >Role Of Erk1/2 Signaling In Congenital Valve Malformations In Noonan Syndrome
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Role Of Erk1/2 Signaling In Congenital Valve Malformations In Noonan Syndrome

机译:Erk1 / 2信号传导在Noonan综合征先天性瓣膜畸形中的作用

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Noonan syndrome (NS) is the most common nonchromosomal genetic disorder associated with cardiovascular malformations. The most prominent cardiac defects in NS are pulmonary valve stenosis and hypertrophic cardiomyopathy. Gain-of-function mutations in the protein tyrosine phosphatase Shp2 have been identified in 50% of NS families. We created a NS mouse model with selective overexpression of mutant Shp2 (Q79R-Shp2) in the developing endocardial cushions. In our model, Cre recombinase driven by the Tie2 promoter irreversibly activates transgenic Q79R-Shp2 expression in the endothelial-derived cell lineage. Q79R-Shp2 expression resulted in embryonic lethality by embryonic day 14.5. Importantly, mutant embryos showed significantly enlarged endocardial cushions in the atrioventricular canal and in the outflow tract. In contrast, overexpression of wild-type Shp2 protein at comparable levels did not enhance endocardial cushion growth or alter the morphology of the mature adult valves. Expression of Q79R-Shp2 was accompanied by increased ERK1/2 activation in a subset of cells within the cushion mesenchyme, suggesting that hyperactivation of this signaling pathway may play a pathogenic role. To test this hypothesis in vivo, Q79R-Shp2-expressing mice were crossed with mice carrying either a homozygous ERK1 or a heterozygous ERK2 deletion. Deletion of ERK1 completely rescued the endocardial cushion phenotype, whereas ERK2 protein reduction did not affect endocardial cushion size. Constitutive hyperactivation of ERK1/2 signaling alone with a transgenic approach resulted in a phenocopy of the valvular phenotype. The data demonstrate both necessity and sufficiency of increased ERK activation downstream of Shp2 in mediating abnormal valve development in a NS mouse model.
机译:Noonan综合征(NS)是与心血管畸形有关的最常见的非染色体遗传性疾病。 NS中最突出的心脏缺陷是肺动脉瓣狭窄和肥厚型心肌病。在50%的NS家族中发现了酪氨酸磷酸酶Shp2的功能获得性突变。我们创建了一个NS小鼠模型,在发展中的心内膜垫层中选择性过量表达突变体Shp2(Q79R-Shp2)。在我们的模型中,由Tie2启动子驱动的Cre重组酶不可逆地激活了内皮源细胞谱系中的转基因Q79R-Shp2表达。 Q79R-Shp2表达在胚胎第14.5天导致胚胎致死率。重要的是,突变体胚胎在房室管和流出道中显示出明显增大的心内膜垫。相比之下,野生型Shp2蛋白在可比水平上的过表达不会增强心内膜垫的生长或改变成熟的成人瓣膜的形态。 Q79R-Shp2的表达伴随着垫间充质内一部分细胞中ERK1 / 2的活化增加,提示该信号通路的过度活化可能起着致病作用。为了在体内测试该假设,将Q79R-Shp2表达小鼠与携带纯合ERK1或杂合ERK2缺失的小鼠杂交。删除ERK1可以完全挽救心内膜垫的表型,而减少ERK2蛋白不会影响心内膜垫的大小。单独使用转基因方法对ERK1 / 2信号进行本构性过度激活会产生瓣膜表型的表型。数据证明在介导NS小鼠模型中异常瓣膜发育中,Shp2下游ERK激活增加的必要性和充分性。

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