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首页> 外文期刊>Biophysical Journal >Mapping Hydrophobic Tunnels and Cavities in Neuroglobin with Noble Gas under Pressure
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Mapping Hydrophobic Tunnels and Cavities in Neuroglobin with Noble Gas under Pressure

机译:在压力下用惰性气体映射疏水隧道和腔内腔内腔

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摘要

Abstract Internal cavities are crucial for conformational flexibility of proteins and can be mapped through noble gas diffusion and docking. Here we investigate the hydrophobic cavities and tunnel network in neuroglobin (Ngb), a hexacoordinated heme protein likely to be involved in neuroprotection, using crystallography under noble gas pressure, mostly at room temperature. In murine Ngb, a large internal cavity is involved in the heme sliding mechanism to achieve binding of gaseous ligands through coordination to the heme iron. In this study, we report that noble gases are hosted by two major sites within the internal cavity. We propose that these cavities could store oxygen and allow its relay in the heme proximity, which could correspond to?NO location in the nitrite-reductase function of Ngb. Thanks to a recently designed pressurization cell using krypton at high pressure, a new gas binding site has been characterized that reveals an alternate pathway for gaseous ligands. A new gas binding site on the proximal side of the heme has also been characterized, using xenon pressure on a Ngb mutant (V140W) that binds CO with a similar rate and affinity to the wild-type, despite a reshaping of the internal cavity. Moreover, this study, to our knowledge, provides new insights into the determinants of the heme sliding mechanism, suggesting that the shift at the beginning of helix G precedes and drives this process.
机译:摘要内腔对于蛋白质的构象灵活性至关重要,并且可以通过贵族气体扩散和对接映射。在这里,我们研究了神经胶囊(NGB)中的疏水性腔体和隧道网络,可能在惰性气体压力下使用晶体学涉及神经保护蛋白,主要在室温下。在小鼠NGB中,大型内腔涉及血红素滑动机构,以通过与血红素铁的配位实现气态配体的结合。在这项研究中,我们报告说惰性气体由内腔内的两个主要部位托管。我们提出这些腔可以储存氧气并允许其继电器在血红素附近,这可以对应于NGB的亚硝酸盐还原酶功能中的任何位置。由于最近设计的加压电池在高压下使用Krypton,已经表征了一种新的气体结合位点,揭示了气态配体的替代途径。在血红素近侧的新的气体结合位点也已经表征,在NGB突变体(V140W)上使用氙气压力与野生型相结合的NGB突变体(V140W),尽管内腔重塑。此外,本研究向我们的知识提供了新的见解,对血红素滑动机制的决定因素提供了新的见解,这表明螺旋G开始的偏移之前并驱动了这一过程。

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  • 来源
    《Biophysical Journal》 |2017年第10期|共8页
  • 作者单位

    ISTCT CNRS UNICAEN CEA Normandie University CERVOxy Team Centre Cyceron Caen France;

    CEA/DRF/BIG/CBM/BioCat LCBM CNRS UMR 5249 Université Grenoble Alpes Grenoble France;

    Instituto Pasteur–Fondazione Cenci Bolognetti and Dipartimento di Scienze Biochimiche “A. Rossi;

    Instituto Pasteur–Fondazione Cenci Bolognetti and Dipartimento di Scienze Biochimiche “A. Rossi;

    LCRB UMR 8015 CNRS Université Paris Descartes Paris France;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 生物物理学;
  • 关键词

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