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首页> 外文期刊>Journal of chemical information and modeling >Test and Evaluation of ff99IDPs Force Field for Intrinsically Disordered Proteins
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Test and Evaluation of ff99IDPs Force Field for Intrinsically Disordered Proteins

机译:ff99IDPs原发性蛋白质紊乱场的测试和评估

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Over 40% of eukaryotic proteomic sequences have been predicted to be intrinsically disordered proteins (IDPs) or intrinsically disordered regions (IDRs) and confirmed to be associated with many diseases. However, widely used force fields cannot well reproduce the conformers of IDPs. Previously the ff99IDPs force field was released to simulate IDPs with CMAP energy corrections for the eight disorder-promoting residues. In order to further confirm the performance of ff99IDPs, three representative IDP systems (arginine-rich HIV-1 Rev, aspartic proteinase inhibitor IA(3), and alpha-synuclein) were used to test and evaluate the simulation results. The results show that for free disordered proteins, the chemical shifts from the ff99IDPs simulations are in quantitative agreement with those from reported NMR measurements and better than those from ff99SBildn. Thus, ff99IDPs can sample more clusters of disordered conformers than ff99SBildn. For structural proteins, both ff99IDPs and ff99SBildn can well reproduce the conformations. In general, ff99IDPs can successfully be used to simulate the conformations of IDPs and IDRs in both bound and free states. However, relative errors could still be found at the bou(n)daries of ordered residues scattered in long disorder-promoting sequences. Therefore, polarizable force fields might be one of the possible ways to further improve the performance on IDPs.
机译:超过40%的真核蛋白质组序列已被预测为内在无序的蛋白质(IDP)或内在无序的区域(IDR),并被证实与许多疾病有关。但是,广泛使用的力场不能很好地再现IDP的构象。以前,释放ff99IDPs力场来模拟IDP,并通过CMAP能量校正对八个促病残基进行了校正。为了进一步确认ff99IDP的性能,使用了三个代表性的IDP系统(富含精氨酸的HIV-1 Rev,天冬氨酸蛋白酶抑制剂IA(3)和α-突触核蛋白)来测试和评估模拟结果。结果表明,对于游离无序蛋白,ff99IDPs模拟产生的化学位移与已报道的NMR测量值定量一致,并且优于ff99SBildn。因此,与ff99SBildn相比,ff99IDP可以采样更多的无规构象簇。对于结构蛋白,ff99IDP和ff99SBildn均可很好地复制构象。通常,ff99IDP可以成功地用于模拟处于绑定状态和自由状态的IDP和IDR的构象。但是,仍然可以在散布在长促病序列中的有序残基的双峰中发现相对误差。因此,极化力场可能是进一步提高IDP性能的可能方法之一。

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