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A computational study of water and CO migration sites and channels inside myoglobin

机译:内肌红蛋白水和二氧化碳迁移网站和频道计算研究

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摘要

Pathways are computed for transport of H2O and CO in myoglobin (Mb), using the single sweep and zero-temperature string methods in a fully atomistic, explicitly solvated model system. Our predictions of sites and barriers in the pathways for CO transport agree with previous studies. For H2O, we predict a binding site in the distal pocket (DP), in agreement with crystallographic observations, and another one close to Leu 29 which explains the importance of this residue in controlling the pocket’s hydrophobicity, as well as disordered minima in the largely apolar xenon cavities. In particular, H2O can occupy and transition among the xenon cavities, Xe4, Xe2, and Xe3. Our results support the hypothesis that the thermodynamically most favorable entry/exit portal for H2O is the so-called histidine gate (HG), the same as for CO. This result, along with the observation of water occupation of both DP and apolar Xe cavities, suggest that water and small gas molecules like CO compete for access to the protein interior, and therefore models of gas molecule transport within proteins should also explicitly consider water transport.
机译:在完全原子化,明确溶剂化的模型系统中,使用单扫描法和零温度串法,计算了肌红蛋白(Mb)中H2O和CO转运的途径。我们对CO传输途径中的位点和障碍的预测与以前的研究一致。对于H2O,我们与晶体学观察结果一致,预测了远端囊袋(DP)的结合位点,另外一个接近Leu 29的位点,这说明该残留物在控制囊袋的疏水性以及在很大程度上抑制无序最小值的重要性。非极性氙气腔。特别是,H2O可以在氙气腔Xe4,Xe2和Xe3之间占据并过渡。我们的结果支持以下假设:H2O的热力学上最有利的进/出入口是所谓的组氨酸门(HG),与CO相同。该结果以及对DP和非极性Xe腔的水占用的观察,表明水和诸如CO的小气体分子竞争进入蛋白质内部,因此蛋白质内气体分子运输的模型也应明确考虑水的运输。

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  • 期刊名称 other
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  • 年(卷),期 -1(9),2
  • 年度 -1
  • 页码 1265–1271
  • 总页数 19
  • 原文格式 PDF
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