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基于一氧化碳加合物的 X 射线晶体结构的脱卤过氧化物酶-血红蛋白 A 中远端组氨酸的柔性模型。

A model for the flexibility of the distal histidine in dehaloperoxidase-hemoglobin A based on X-ray crystal structures of the carbon monoxide adduct.

机构信息

Department of Chemistry, North Carolina State University , Raleigh, North Carolina 27695, United States.

出版信息

Biochemistry. 2014 Apr 22;53(15):2474-82. doi: 10.1021/bi5001905. Epub 2014 Apr 8.

Abstract

Dehaloperoxidase hemoglobin A (DHP A) is a multifunctional hemoglobin that appears to have evolved oxidative pathways for the degradation of xenobiotics as a protective function that complements the oxygen transport function. DHP A possesses at least two internal binding sites, one for substrates and one for inhibitors, which include various halogenated phenols and indoles. Herein, we report the X-ray crystallographic structure of the carbonmonoxy complex (DHPCO). Unlike other DHP structures with 6-coordinated heme, the conformation of the distal histidine (H55) in DHPCO is primarily external or solvent exposed, despite the fact that the heme Fe is 6-coordinated. As observed generally in globins, DHP exhibits two distal histidine conformations (one internal and one external). In previous structural studies, we have shown that the distribution of H55 conformations is weighted strongly toward the external position when the DHP heme Fe is 5-coordinated. The large population of the external conformation of the distal histidine observed in DHPCO crystals at pH 6.0 indicates that some structural factor in DHP must account for the difference from other globins, which exhibit a significant external conformation only when pH < 4.5. While the original hypothesis suggested that interaction with a heme-Fe-bound ligand was the determinant of H55 conformation, the current study forces a refinement of that hypothesis. The external or open conformation of H55 is observed to have interactions with two propionate groups in heme, at distances of 3.82 and 2.73 Å, respectively. A relatively weak hydrogen bonding interaction between H55 and CO, combined with strong interactions with heme propionate (position 6), is hypothesized to strengthen the external conformation of H55. Density function theory (DFT) calculations were conducted to test whether there is a weaker hydrogen bond interaction between H55 and heme bonded CO or O2. Molecular dynamics simulations were conducted to examine how the tautomeric forms of H55 affect the dynamic motions of the distal histidine that govern the switching between open and closed conformations. The calculations support the modified hypothesis suggesting a competition between the strength of interactions with heme ligand and the heme propionates as the factors that determine the conformation of the distal histidine.

摘要

脱卤过氧化物酶血红蛋白 A(DHP A)是一种多功能血红蛋白,似乎已经进化出氧化途径来降解外来化合物,作为一种补充氧气运输功能的保护功能。DHP A 至少具有两个内部结合位点,一个用于底物,一个用于抑制剂,其中包括各种卤代酚和吲哚。在此,我们报告了碳氧复合物(DHPCO)的 X 射线晶体结构。与其他具有 6 配位血红素的 DHP 结构不同,DHPCO 中远端组氨酸(H55)的构象主要是外部或溶剂暴露的,尽管血红素 Fe 是 6 配位的。与球蛋白一样,DHP 表现出两种远端组氨酸构象(一种内部和一种外部)。在先前的结构研究中,我们已经表明,当 DHP 血红素 Fe 是 5 配位时,H55 构象的分布强烈偏向于外部位置。在 pH6.0 下的 DHPCO 晶体中观察到大量的远端组氨酸外部构象表明,DHP 中的某些结构因素必须解释与其他球蛋白的差异,后者只有在 pH < 4.5 时才表现出明显的外部构象。虽然最初的假设表明与血红素-Fe 结合配体的相互作用是 H55 构象的决定因素,但目前的研究迫使对该假设进行修正。观察到远端组氨酸 H55 的外部或开放构象与血红素中的两个丙酸基团相互作用,距离分别为 3.82 和 2.73 Å。H55 与 CO 之间的相对较弱的氢键相互作用,加上与血红素丙酸酯(位置 6)的强相互作用,假设可以增强 H55 的外部构象。进行了密度泛函理论(DFT)计算,以测试 H55 与血红素结合的 CO 或 O2 之间是否存在较弱的氢键相互作用。进行了分子动力学模拟,以检查 H55 的互变异构形式如何影响控制开放和闭合构象之间转换的远端组氨酸的动态运动。这些计算支持了修正后的假设,即与血红素配体的相互作用强度与血红素丙酸酯之间的竞争是决定远端组氨酸构象的因素。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/f284/4203366/3ee1af549827/bi-2014-001905_0001.jpg

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