联合光谱学和结构学方法探索组氨酸配位血红素依赖性芳香氧合酶的作用机制。
Combined spectroscopic and structural approaches to explore the mechanism of histidine-ligated heme-dependent aromatic oxygenases.
机构信息
Department of Chemistry, University of Georgia, Athens, GA, United States.
Department of Chemistry, University of Georgia, Athens, GA, United States.
出版信息
Methods Enzymol. 2023;685:405-432. doi: 10.1016/bs.mie.2023.03.008. Epub 2023 May 2.
The emergence of histidine-ligated heme-dependent aromatic oxygenases (HDAOs) has greatly enriched heme chemistry, and more studies are required to appreciate the diversity found in His-ligated heme proteins. This chapter describes recent methods in probing the HDAO mechanisms in detail, along with the discussion on how they can benefit structure-function studies of other heme systems. The experimental details are centered on studies of TyrHs, followed by explanation of how the results obtained would advance the understanding of the specific enzyme and also HDAOs. Spectroscopic methods, namely, electronic absorption and EPR spectroscopies, and X-ray crystallography are valuable techniques commonly used to characterize the properties of the heme center and the nature of heme-based intermediate. Herein, we show that the combination of these tools are extremely powerful, not only because one can acquire electronic, magnetic, and conformational information from different phases, but also because of the advantages brought by spectroscopic characterization on crystal samples.
组氨酸配位血红素依赖性芳香氧合酶(HDAOs)的出现极大地丰富了血红素化学,需要更多的研究来了解 His 配位血红素蛋白中发现的多样性。本章详细描述了探测 HDAO 机制的最新方法,并讨论了它们如何有益于其他血红素系统的结构-功能研究。实验细节主要集中在 TyrHs 的研究上,然后解释如何获得的结果将促进对特定酶和 HDAOs 的理解。光谱方法,即电子吸收和 EPR 光谱学以及 X 射线晶体学,是常用于表征血红素中心性质和血红素基中间物性质的有价值技术。在这里,我们表明,这些工具的组合非常强大,不仅因为可以从不同相获得电子、磁性和构象信息,而且因为光谱表征对晶体样品带来的优势。
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