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Congenital disease SNPs target lineage specific structural elements in protein kinases

机译:先天性疾病SNP靶向蛋白激酶中的谱系特异性结构元件

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摘要

The catalytic domain of protein kinases harbors a large number of disease-causing single nucleotide polymorphisms (SNPs) and common or neutral SNPs that are not known or hypothesized to be associated with any disease. Distinguishing these two types of polymorphisms is critical in accurately predicting the causative role of SNPs in both candidate gene and genome-wide association studies. In this study, we have analyzed the structural location of common and disease-associated SNPs in the catalytic domain of protein kinases and find that, although common SNPs are randomly distributed within the catalytic core, known disease SNPs consistently map to regulatory and substrate binding regions. In particular, a buried side-chain network that anchors the flexible activation loop to the catalytic core is frequently mutated in disease patients. This network was recently shown to be absent in distantly related eukaryotic-like kinases, which lack an exaggerated activation loop and, presumably, are not regulated by phosphorylation.
机译:蛋白激酶的催化结构域具有大量的疾病致病性单核苷酸多态性(SNP)和未知或假设与任何疾病相关的常见或中性SNP。区分这两种类型的多态性对于准确预测候选基因和全基因组关联研究中SNP的致病性至关重要。在这项研究中,我们分析了常见的和疾病相关的SNP在蛋白激酶催化域中的结构位置,并发现,尽管常见的SNP随机分布在催化核心内,但已知的疾病SNP始终能映射到调节区和底物结合区。特别地,在疾病患者中经常突变将柔性活化环锚定至催化核心的掩埋侧链网络。最近显示该网络在远距离相关的真核样激酶中不存在,该激酶缺乏夸大的激活环,并且可能不受磷酸化作用的调节。

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