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首页> 外文期刊>Biophysical Journal >Optimized torsion-angle normal modes reproduce conformational changes more accurately than cartesian modes.
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Optimized torsion-angle normal modes reproduce conformational changes more accurately than cartesian modes.

机译:优化的扭转角法向模式比笛卡尔模式更准确地再现构象变化。

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摘要

We present what to our knowledge is a new method of optimized torsion-angle normal-mode analysis, in which the normal modes move along curved paths in Cartesian space. We show that optimized torsion-angle normal modes reproduce protein conformational changes more accurately than Cartesian normal modes. We also show that orthogonalizing the displacement vectors from torsion-angle normal-mode analysis and projecting them as straight lines in Cartesian space does not lead to better performance than Cartesian normal modes. Clearly, protein motion is more naturally described by curved paths in Cartesian space.
机译:我们介绍我们所知道的是一种优化的扭转角法线模式分析的新方法,其中法线模式在笛卡尔空间中沿弯曲路径移动。我们显示优化的扭转角法向模式比笛卡尔法向模式更准确地重现蛋白质构象变化。我们还表明,将正交于扭转角法线分析的位移向量正交化并将其投影为笛卡尔空间中的直线不会比笛卡尔法线产生更好的性能。显然,蛋白质运动更自然地由笛卡尔空间中的弯曲路径来描述。

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