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首页> 外文期刊>Journal of the American Chemical Society >Structural, NMR Spectroscopic, and Computational Investigation of Hemin Loading in the Hemophore HasAp from Pseudomonas aeruginosa
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Structural, NMR Spectroscopic, and Computational Investigation of Hemin Loading in the Hemophore HasAp from Pseudomonas aeruginosa

机译:铜绿假单胞菌的血红素HasAp中血红素负载量的结构,NMR光谱和计算研究

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When challenged by low-iron conditions several Gram-negative pathogens secrete a hemophore (HasA) to scavenge hemin from its host and deliver it to a receptor (HasR) on their outer membrane for internalization. Here we report results from studies aimed at probing the structural and dynamic processes at play in the loading of the apo-hemophore secreted by P. aeruginosa (apo-HasAp) with hemin. The structure of apo-HasAp shows a large conformational change in the loop harboring axial ligand His32 relative to the structure of holo-HasAp, whereas the loop bearing the other axial ligand, Tyr75, remains intact. To investigate the role played by the axial ligand-bearing loops in the process of hemin capture we investigated the H32A mutant, which was found to exist as a monomer in its apo-form and as a mixture of monomers and dimers in its holo-form. We obtained an X-ray structure of dimeric H32A holo-HasAp, which revealed that the two subunits are linked by cofacial interactions of two hemin molecules and that the conformation of the Ala32 loop in the dimer is identical to that exhibited by the His32 loop in wild type apo-HasAp. Additional data suggest that the conformation of the Ala32 loop in the dimer is mainly a consequence of dimerization. Hence, to investigate the effect of hemin loading on the topology of the His32 loop we also obtained the crystal structure of monomeric H32A holo-HasAp coordinated by imidazole (H32A-imidazole) and investigated the monomeric H32A HasAp and H32A-imidazole species in solution by NMR spectroscopy. The structure of H32A-imidazole revealed that the Ala32 loop attains a “closed” conformation nearly identical to that observed in wild type holo-HasAp, and the NMR investigations indicated that this conformation is maintained in solution. The NMR studies also highlighted conformational heterogeneity at the H32 loop hinges and in other key sections of the structure. Targeted molecular dynamics simulations allowed us to propose a possible path for the closing of the His32 loop upon hemin binding and identified molecular motions that are likely important in transmitting the presence of hemin in the Tyr75 loop to the His32 loop to initiate its closing. Importantly, residues implicated as undergoing motions in the computations are also observed as being dynamic by NMR. Taken together, these observations provide direct experimental evidence indicating that hemin loads onto the Tyr75 loop of apo-HasAp, which triggers the closing of the His32 loop.
机译:当受到低铁条件的挑战时,数种革兰氏阴性病原体会分泌出一种荧光团(HasA),以清除其宿主中的血红素,并将其传递至其外膜上的受体(HasR)进行内在化。在这里,我们报告了旨在探索铜绿假单胞菌(apo-HasAp)分泌的血红素载脂蛋白载脂蛋白的结构和动力学过程的研究结果。 apo-HasAp的结构相对于完整HasAp的结构,在带有轴向配体His32的环中显示出较大的构象变化,而带有另一个轴向配体Tyr75的环则保持完整。为了研究轴向配体轴承环在血红素捕获过程中的作用,我们研究了H32A突变体,发现该突变体以脱辅基形式的单体形式存在,并且以其全形式的单体和二聚体混合物形式存在。我们获得了二聚体H32A holo-HasAp的X射线结构,揭示了两个亚基通过两个血红素分子的界面相互作用连接,并且二聚体中Ala32环的构象与His32环所显示的构象相同。野生型载脂蛋白HasAp。其他数据表明,二聚体中Ala32环的构象主要是二聚化的结果。因此,为了研究血红素负载量对His32环的拓扑结构的影响,我们还获得了由咪唑(H32A-咪唑)配位的单体H32A holo-HasAp的晶体结构,并通过溶液研究了单体H32A HasAp和H32A-咪唑的种类。 NMR光谱。 H32A-咪唑的结构表明,Ala32环获得的“封闭”构象几乎与野生型全HasAp中观察到的构象相同,而NMR研究表明该构象在溶液中得以维持。 NMR研究还强调了H32环铰链和结构的其他关键部分的构象异质性。有针对性的分子动力学模拟使我们能够提出与血红素结合时His32环闭合的可能路径,并确定分子运动,这可能对将Tyr75环中的血红素的存在传递给His32环以启动其闭合起重要作用。重要的是,在NMR中还观察到涉及运动的残基是动态的。综上所述,这些观察结果提供了直接的实验证据,表明血红素负载在apo-HasAp的Tyr75环上,这触发了His32环的闭合。

著录项

  • 来源
    《Journal of the American Chemical Society》 |2010年第28期|p.9857-9872|共16页
  • 作者单位

    Department of Chemistry, University of Kansas, Multidisciplinary Research Building, 2030 Becker Drive, Room 220 E, Lawrence, Kansas 66047, Del Shankel Structural Biology Center, University of Kansas, 2034 Becker Drive, Lawrence, Kansas 66047, Department o;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);美国《生物学医学文摘》(MEDLINE);美国《化学文摘》(CA);
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  • 正文语种 eng
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