首页> 外文期刊>European journal of human genetics: EJHG >A novel kinase mutation in VEGFR-1 predisposes its alpha C-helix/activation loop towards allosteric activation: Atomic insights from protein simulation
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A novel kinase mutation in VEGFR-1 predisposes its alpha C-helix/activation loop towards allosteric activation: Atomic insights from protein simulation

机译:VEGFR-1中的新型激酶突变使它的αC螺旋/活化环趋向于变构活化:蛋白质模拟的原子学见解

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Vascular endothelial growth factor receptor 1 (VEGFR-1) has been implicated in diverse pathologies, including cancers. Although VEGFR-1 is considered as functionally impaired kinase, its decoy characteristics make it an important regulator of VEGFR-mediated signaling, particularly in tumor angiogenesis. VEGFR-1 conveys signaling via its tyrosine kinase (TK) domain whose activation is regulated by phosphorylation of specific tyrosine residues. Thus dysregulation of VEGFR-1 signaling, as reported in most of the cancers, might be a consequence of altered phosphorylation that could be attributed to genotypic variations in its TK domain. Considering the importance of TK domain of VEGFR-1, we carried out its mutational screening in 84 clinically validated and histopathologically confirmed colorectal cancer patients. By means of direct DNA sequencing and SNP analyses, eight novel variations, including one synonymous, two deletion, one missense and four intronic variations, were reported in the TK domain of VEGFR-1. rs730882263:C>G variation specifically reported in colon cancer, representing a single-atomic change (Sulfur to Oxygen) in the predicted (p.Cys1110Ser) protein, was observed as potentially deleterious variation as assessed by multiple single-nucleotide polymorphism prediction servers. Molecular dynamics simulations of VEGFR-1 Wt and (p.Cys1110Ser) variant models revealed major conformational changes in variant protein presumptuously generating an open conformation thereby exposing the activation domain and consequently increasing the probability of phosphorylation events: a condition frequently reported in cancers.
机译:血管内皮生长因子受体1(VEGFR-1)已被牵涉到包括癌症在内的多种病理学中。尽管VEGFR-1被认为是功能受损的激酶,但其诱饵特性使其成为VEGFR介导信号传导的重要调节剂,尤其是在肿瘤血管生成中。 VEGFR-1通过其酪氨酸激酶(TK)结构域传递信号,其活化受特定酪氨酸残基磷酸化的调节。因此,正如在大多数癌症中所报道的那样,VEGFR-1信号传导异常可能是磷酸化改变的结果,这可能归因于其TK结构域的基因型变异。考虑到VEGFR-1 TK结构域的重要性,我们对84位经临床验证和组织病理学证实的大肠癌患者进行了突变筛选。通过直接DNA测序和SNP分析,在VEGFR-1的TK结构域中报道了八种新颖的变异,包括一个同义,两个缺失,一个错义和四个内含子变异。 rs730882263:C> G变异在结肠癌中特别报道,代表预测的(p.Cys1110Ser)蛋白中的单原子变化(硫氧化),被多个单核苷酸多态性预测服务器评估为潜在有害变异。 VEGFR-1 Wt和(p.Cys1110Ser)变异模型的分子动力学模拟揭示了变异蛋白中主要的构象变化,推测产生了开放构象,从而暴露了激活结构域,从而增加了磷酸化事件的可能性:这种现象在癌症中经常报道。

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