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Contribution of energy values to the analysis of global searching molecular dynamics simulations of transmembrane helical bundles.

机译:能量值对跨膜螺旋束整体搜索分子动力学模拟分析的贡献。

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摘要

Molecular interactions between transmembrane alpha-helices can be explored using global searching molecular dynamics simulations (GSMDS), a method that produces a group of probable low energy structures. We have shown previously that the correct model in various homooligomers is always located at the bottom of one of various possible energy basins. Unfortunately, the correct model is not necessarily the one with the lowest energy according to the computational protocol, which has resulted in overlooking of this parameter in favor of experimental data. In an attempt to use energetic considerations in the aforementioned analysis, we used global searching molecular dynamics simulations on three homooligomers of different sizes, the structures of which are known. As expected, our results show that even when the conformational space searched includes the correct structure, taking together simulations using both left and right handedness, the correct model does not necessarily have the lowest energy. However, for the models derived from the simulation that uses the correct handedness, the lowest energy model is always at, or very close to, the correct orientation. We hypothesize that this should also be true when simulations are performed using homologous sequences, and consequently lowest energy models with the right handedness should produce a cluster around a certain orientation. In contrast, using the wrong handedness the lowest energy structures for each sequence should appear at many different orientations. The rationale behind this is that, although more than one energy basin may exist, basins that do not contain the correct model will shift or disappear because they will be destabilized by at least one conservative (i.e. silent) mutation, whereas the basin containing the correct model will remain. This not only allows one to point to the possible handedness of the bundle, but can be used to overcome ambiguities arising from the use of homologous sequences in the analysis of global searching molecular dynamics simulations. In addition, because clustering of lowest energy models arising from homologous sequences only happens when the estimation of the helix tilt is correct, it may provide a validation for the helix tilt estimate.
机译:可以使用全局搜索分子动力学模拟(GSMDS)探索跨膜α-螺旋之间的分子相互作用,该方法可产生一组可能的低能结构。先前我们已经表明,各种同聚物中的正确模型始终位于各种可能的能量盆之一的底部。不幸的是,根据计算协议,正确的模型不一定是能量最低的模型,这导致该参数被忽略,有利于实验数据。为了在上述分析中使用能量考虑因素,我们对三种不同大小的均聚物进行了全局搜索分子动力学模拟,这些均聚物的结构是已知的。不出所料,我们的结果表明,即使所搜索的构象空间包含正确的结构,同时使用左,右手性进行模拟,正确的模型也不一定具有最低的能量。但是,对于从使用正确的手性的模拟得出的模型中,最低能量的模型始终处于或非常接近正确的方向。我们假设当使用同源序列执行模拟时,这也应该成立,因此具有右手惯性的最低能量模型应在特定方向周围产生簇。相反,由于使用了不正确的惯性,每个序列的最低能量结构应该出现在许多不同的方向上。其背后的理由是,尽管可能存在多个能源盆地,但没有正确模型的盆地将移动或消失,因为它们将因至少一个保守(即无声)突变而不稳定,而包含正确模型的盆地模型将保留。这不仅可以指出束的可能的惯用性,而且可以用来克服在整体搜索分子动力学模拟的分析中使用同源序列引起的歧义。另外,由于仅在螺旋斜率的估计正确时才发生由同源序列产生的最低能量模型的聚类,因此可以为螺旋斜率估计提供验证。

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