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首页> 外文期刊>Physical chemistry chemical physics: PCCP >Selective enhanced sampling in dihedral energy facilitates overcoming the dihedral energy increase in protein folding and accelerates the searching for protein native structure
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Selective enhanced sampling in dihedral energy facilitates overcoming the dihedral energy increase in protein folding and accelerates the searching for protein native structure

机译:二面能量中的选择性增强抽样有助于克服蛋白质折叠的二面能量增加,加速寻找蛋白质天然结构的搜索

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摘要

The dihedral energy function is the most influential parameter in molecular mechanics (MM) force field parameter optimization. A selective enhanced sampling of dihedral energy could effectively reflect the influence of dihedral energy settings on protein secondary structure representation, which in turn testifies the availability of the force field in folding simulation. Here, a Dihedral-based Selective Integrated-Tempering-Sampling Molecular Dynamics (D-SITSMD) simulation method is shown to provide a selective enhanced sampling of dihedral energy without introducing large energetic noise. Its capabilities of searching for protein natively folded structure and providing the underlying folding pathway are evaluated through the folding tests of three peptides (chignolin, TC5b, and HP35) with multiple AMBER force fields (FF14SBonlysc, FF99SBildn, or FF03) and the comparison to presented experimental data and REMD simulations. Both above-mentioned capabilities are improved, displaying the potential of D-SITSMD in the studies of in silico protein folding and structure refinement. Additionally, it is commonly observed among the test simulation systems that their folding processes are thermodynamically favorable for non-bonded vdW and electrostatic energies but unfavorable for dihedral energy, such that the folding barrier height correlated with the dihedral energy increase from the unfolded to folded state whereas the unfolding free energy barrier correlated with the combined increase of vdW and electrostatic energies in the unfolding process. It is speculated that the influence of a force field on the folding barrier of a protein is fulfilled mainly through regulating the contribution of dihedral energy to determine the secondary structure formation in the global folding process.
机译:二对体能量功能是分子机械(MM)力场参数优化中最具影响力的参数。选择性增强的二面能量采样可以有效地反映Dihedral能量环境对蛋白质二级结构表示的影响,这反过来又证明了折叠模拟中的力场的可用性。这里,示出了基于二面基的选择性集成的回火采样分子动力学(D-Sitsmd)模拟方法,以提供Dihedral能量的选择性增强采样,而不会引入大量的能量噪声。通过用多个琥珀色田(FF14SBONLYSC,FF99SBILDN或FF03)的三种肽(Chignolin,TC5B和HP35)的折叠试验来评估其搜索蛋白质本物质折叠结构并提供底层折叠途径的能力。与呈现的比较实验数据和REMD仿真。提高了上述能力,展示了D-SitsMD在硅蛋白折叠和结构细化的研究中的潜力。另外,在测试模拟系统中通常观察到它们的折叠过程热力学地有利于非粘合的VDW和静电能量,而是对二面能量不利,使得折叠屏障高度与从展开到折叠状态的二向能量增加相关虽然展开自由能屏障与展开过程中的VDW和静电能量的组合增加相关。据推测,主要通过调节二面能量的贡献来确定全球折叠过程中的二次结构形成的贡献来实现蛋白质折叠屏障对蛋白质的折叠屏障的影响。

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    Chinese Acad Sci CAS Key Lab Receptor Res Shanghai Inst Mat Med Drug Discovery &

    Design Ctr 555 Zuchongzhi Rd Shanghai 201203 Peoples R China;

    Beijing Natl Lab Mol Sci 1st North St Beijing 100080 Peoples R China;

    Chinese Acad Sci CAS Key Lab Receptor Res Shanghai Inst Mat Med Drug Discovery &

    Design Ctr 555 Zuchongzhi Rd Shanghai 201203 Peoples R China;

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  • 正文语种 eng
  • 中图分类 物理学;化学;
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