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华丽神仙鱼去卤过氧化物酶 (DHP):使用“过氧化物酶样”肌红蛋白突变体和“肌红蛋白样”DHP 突变体研究影响卤酚脱卤机制的结构因素的研究。

Amphitrite ornata dehaloperoxidase (DHP): investigations of structural factors that influence the mechanism of halophenol dehalogenation using "peroxidase-like" myoglobin mutants and "myoglobin-like" DHP mutants.

机构信息

Department of Chemistry and Biochemistry, University of South Carolina, Columbia, South Carolina 20208, USA.

出版信息

Biochemistry. 2011 Sep 27;50(38):8172-80. doi: 10.1021/bi2009129. Epub 2011 Aug 30.

Abstract

Dehaloperoxidase (DHP), discovered in the marine terebellid polychaete Amphitrite ornata, is the first heme-containing globin with a peroxidase activity. The sequence and crystal structure of DHP argue that it evolved from an ancient O(2) transport and storage globin. Thus, DHP retains an oxygen carrier function but also has the ability to degrade halophenol toxicants in its living environment. Sperm whale myoglobin (Mb) in the ferric state has a peroxidase activity ∼10 times lower than that of DHP. The catalytic activity enhancement observed in DHP appears to have been generated mainly by subtle changes in the positions of the proximal and distal histidine residues that appeared during DHP evolution. Herein, we report investigations into the mechanism of action of DHP derived from examination of "peroxidase-like" Mb mutants and "Mb-like" DHP mutants. The dehalogenation ability of wild-type Mb is augmented in the peroxidase-like Mb mutants (F43H/H64L, G65T, and G65I Mb) but attenuated in the Mb-like T56G DHP variant. X-ray crystallographic data show that the distal His residues in G65T Mb and G65I are positioned ∼0.3 and ∼0.8 Å, respectively, farther from the heme iron compared to that in the wild-type protein. The H93K/T95H double mutant Mb with the proximal His shifted to the "DHP-like" position has an increased peroxidase activity. In addition, a better dehaloperoxidase (M86E DHP) was generated by introducing a negative charge near His89 to enhance the imidazolate character of the proximal His. Finally, only minimal differences in dehalogenation activities are seen among the exogenous ligand-free DHP, the acetate-bound DHP, and the distal site blocker L100F DHP mutant. Thus, we conclude that binding of halophenols in the internal binding site (i.e., distal cavity) is not essential for catalysis. This work provides a foundation for a new structure-function paradigm for peroxidases and for the molecular evolution of the dual-function enzyme DHP.

摘要

脱卤过氧化物酶(DHP)是在海洋环节动物 Amphitrite ornata 中发现的,是第一个具有过氧化物酶活性的含血红素球蛋白。DHP 的序列和晶体结构表明它是由古老的 O(2) 运输和储存球蛋白进化而来的。因此,DHP 保留了氧载体功能,但也具有降解其生活环境中卤代酚类有毒物质的能力。处于三价铁状态的抹香鲸肌红蛋白(Mb)的过氧化物酶活性比 DHP 低约 10 倍。在 DHP 进化过程中,观察到的催化活性增强似乎主要是由近端和远端组氨酸残基位置的微妙变化产生的。在此,我们通过研究“过氧化物酶样”Mb 突变体和“Mb 样”DHP 突变体,报告了对 DHP 作用机制的研究结果。在过氧化物酶样 Mb 突变体(F43H/H64L、G65T 和 G65I Mb)中,野生型 Mb 的脱卤能力增强,但在 Mb 样 T56G DHP 变体中减弱。X 射线晶体学数据表明,与野生型蛋白相比,G65T Mb 和 G65I Mb 中的远端 His 残基分别定位在距血红素铁约 0.3 和 0.8 Å 处。将近端 His 移至“DHP 样”位置的 H93K/T95H 双突变 Mb 具有更高的过氧化物酶活性。此外,通过在靠近 His89 处引入负电荷,产生了更好的脱卤过氧化物酶(M86E DHP),从而增强了近端 His 的咪唑特征。最后,在外源配体游离的 DHP、乙酸盐结合的 DHP 和远端位点阻断剂 L100F DHP 突变体之间,脱卤活性几乎没有差异。因此,我们得出结论,卤代酚类物质在内部结合位点(即远端腔)的结合对于催化不是必需的。这项工作为过氧化物酶的新结构-功能范式和双功能酶 DHP 的分子进化提供了基础。

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