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Conformation Dynamics of the Intrinsically Disordered Protein c-Myb with the ff99IDPs Force Field

机译:具有ff99IDPs力场的固有无序蛋白c-Myb的构象动力学

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摘要

The intrinsically disordered protein c-Myb plays a critical role in cellular proliferation and differentiation. Loss of c-myb function results in embryonic lethality due to failure of fetal hepatic hematopoiesis. The conformation dynamics of the intrinsically disordered c-Myb are still unknown. Here, molecular dynamics (MD) simulations with the intrinsically disordered protein force field ff99IDPs were used to study the conformation dynamics. In comparison with ff99SBildn, ff99IDPs can reproduce more diverse disordered conformers of c-Myb. The predicted secondary chemical shift under ff99IDPs is more close to that of experiment data than that under ff99SBildn. Therefore, ff99IDPs can sample native molten globule, native pre-molten globule and native coil conformers for c-Myb. These results are consistent with those of other intrinsically disordered proteins. Kinetic analysis of MD simulations shows that c-Myb folds via a two-state process and indicates that c-Myb folds in the order of tertiary folding and helical folding. The folding nucleus of KEL plays an essential role in stabilizing the folding state with dynamic correlation networks. The influences of solvent models for TIP3P, TIP4P-EW and TIP5P were also investigated and it was found that TIP3P and ff99IDPs are the best combination to research the conformer sampling of c-Myb. These results reveal the conformation dynamics of c-Myb and confirm that the ff99IDPs force field can be used to research the relationship between structure and function of other intrinsically disordered proteins.
机译:内在失调的蛋白质c-Myb在细胞增殖和分化中起关键作用。由于胎儿肝造血功能衰竭,c-myb功能丧失导致胚胎致死率。内在无序c-Myb的构象动力学仍然是未知的。在这里,分子动力学(MD)模拟使用本质上无序的蛋白质力场ff99IDPs来研究构象动力学。与ff99SBildn相比,ff99IDPs可以复制c-Myb的更多无序构象异构体。在ff99IDPs下,预测的二次化学位移比在ff99SBildn下更接近实验数据。因此,ff99IDP可以为c-Myb采样天然熔融小球,天然熔融前小球和天然螺旋构象体。这些结果与其他固有紊乱的蛋白质的结果一致。 MD模拟的动力学分析表明,c-Myb通过二态过程折叠,并表明c-Myb折叠为三级折叠和螺旋折叠。 KEL的折叠核在利用动态相关网络稳定折叠状态中起着至关重要的作用。还研究了溶剂模型对TIP3P,TIP4P-EW和TIP5P的影响,发现TIP3P和ff99IDPs是研究c-Myb构象取样的最佳组合。这些结果揭示了c-Myb的构象动力学,并证实ff99IDPs力场可用于研究其他内在无序蛋白的结构与功能之间的关系。

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