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Structural Perturbations due to Mutation (H1047R) in Phosphoinositide-3-kinase (PI3Kα) and Its Involvement in Oncogenesis: An in Silico Insight

机译:磷酸肌醇-3-激酶(PI3Kα)中因突变(H1047R)引起的结构扰动及其在肿瘤发生中的作用:计算机模拟

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摘要

PI3Kα is a heterodimer protein consisting of two subunits (p110α and p85α) which promotes various signaling pathways. Oncogenic mutation in the catalytic subunit p110α of PI3Kα at the 1047 position in the kinase domain substitutes the histidine with arginine. This mutation brings about conformational transitions in the protein complex. These transitions expose the membrane binding region of PI3Kα, and then it independently binds to the cell membrane through its kinase domain without the involvement of the membrane-bound protein RAS. We observed notable changes between the protein complexes (p110α–p85α) of native and mutant structures at the atomic level using molecular dynamics simulations. Simulation results revealed formation of a less number of hydrogen bonds between the two subunits in the mutant protein complex which led the two subunits to move away from each other. This increase in distance between the subunits led to an expanded structure, thereby increasing the flexibility of the protein complex. Furthermore, a study of secondary structure elements and the electrostatic potential of the protein also gave a molecular insight into the change in interaction patterns of the protein with the plasma membrane. Our finding clearly indicates the role of mutation in oncogenesis and provides an insight into considering the structural aspects to handle this mutation.
机译:PI3Kα是由两个亚基(p110α和p85α)组成的异二聚体蛋白,可促进各种信号传导途径。在激酶结构域中1047位的PI3Kα催化亚基p110α中的致癌突变用精氨酸取代了组氨酸。这种突变导致蛋白质复合物中的构象转变。这些转变暴露了PI3Kα的膜结合区,然后它通过其激酶结构域独立地结合到细胞膜上,而没有膜结合蛋白RAS的参与。我们使用分子动力学模拟观察到天然结构和突变结构的蛋白质复合物(p110α–p85α)在原子水平上的显着变化。模拟结果显示突变蛋白复合物中两个亚基之间形成较少数量的氢键,导致两个亚基彼此远离。亚基之间距离的增加导致结构扩展,从而增加了蛋白质复合物的柔韧性。此外,对蛋白质的二级结构元素和静电势的研究也使人们深入了解了蛋白质与质膜相互作用模式的变化。我们的发现清楚地表明了突变在肿瘤发生中的作用,并提供了对考虑处理该突变的结构方面的见识。

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