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突变对不等蛤血红蛋白二聚体中氧气逸出分子动力学的影响。

Effects of mutations on the molecular dynamics of oxygen escape from the dimeric hemoglobin of Scapharca inaequivalvis.

作者信息

Trujillo Kevin, Papagiannopoulos Tasso, Olsen Kenneth W

机构信息

Department of Chemistry and Biochemistry, Loyola University Chicago, Chicago, IL, 60660, USA.

出版信息

F1000Res. 2015 Mar 13;4:65. doi: 10.12688/f1000research.6127.1. eCollection 2015.

Abstract

Like many hemoglobins, the structure of the dimeric hemoglobin from the clam Scapharca inaequivalvis is a "closed bottle" since there is no direct tunnel from the oxygen binding site on the heme to the solvent.  The proximal histidine faces the dimer interface, which consists of the E and F helicies.  This is significantly different from tetrameric vertebrate hemoglobins and brings the heme groups near the subunit interface. The subunit interface is also characterized by an immobile, hydrogen-bonded network of water molecules.  Although there is data which is consistent with the histidine gate pathway for ligand escape, these aspects of the structure would seem to make that pathway less likely. Locally enhanced sampling molecular dynamics are used here to suggest alternative pathways in the wild-type and six mutant proteins. In most cases the point mutations change the selection of exit routes observed in the simulations. Exit via the histidine gate is rarely seem although oxygen molecules do occasionally cross over the interface from one subunit to the other. The results suggest that changes in flexibility and, in some cases, creation of new cavities can explain the effects of the mutations on ligand exit paths.

摘要

与许多血红蛋白一样,不等蛤(Scapharca inaequivalvis)的二聚体血红蛋白结构是一个“封闭的瓶子”,因为从血红素上的氧结合位点到溶剂没有直接通道。近端组氨酸面向由E螺旋和F螺旋组成的二聚体界面。这与四聚体脊椎动物血红蛋白有显著不同,并使血红素基团靠近亚基界面。亚基界面的特征还在于由水分子组成的固定的氢键网络。尽管有数据与配体逸出的组氨酸门途径一致,但结构的这些方面似乎使该途径不太可能。此处使用局部增强采样分子动力学来推测野生型和六种突变蛋白中的替代途径。在大多数情况下,点突变改变了模拟中观察到的出口途径选择。尽管氧分子偶尔会从一个亚基穿过界面到另一个亚基,但通过组氨酸门的出口很少见。结果表明,灵活性的变化以及在某些情况下新腔的形成可以解释突变对配体出口途径的影响。

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