Jeoung Jae-Hun, Martins Berta M, Dobbek Holger
Institute of Biology, Structural Biology and Biochemistry, Humboldt-Universität zu Berlin, Berlin, Germany.
Methods Mol Biol. 2019;1876:167-178. doi: 10.1007/978-1-4939-8864-8_11.
Carbon monoxide dehydrogenases (CODHs) are central players in the biogeochemical carbon monoxide (CO) cycle and have been extensively studied from the ecological level to the structural/molecular level. Of the two types of CODHs, the oxygen-tolerant CODHs use a bimetallic [CuSMo(=O)OH] center connected to the protein via a pyranopterin cofactor, whereas the oxygen-sensitive CODHs contain a [NiFeS-OH]-cluster. Despite the fact that we have a basic understanding of how both types of CODHs use distinct active sites to catalyze the oxidation of CO with water to CO, two protons, and two electrons (a reversible reaction in the cases of the oxygen-sensitive CODHs), many questions remain unanswered, especially concerning the electronic structures of the intermediate states. Since these states will likely be only revealed by the interplay of experimental and theoretical methods, there is a need to obtain accurate descriptions of the active site architectures in various states and, consequently, a need to generate crystals with good diffraction quality and collect data at element-specific wavelengths in order to determine the identity of elements in the case of mixed states. This chapter provides a description of the general working protocols for the crystallization and structural analysis of Cu,Mo-CODH and Ni,Fe-CODH that facilitates the mechanistic investigations of these important metalloenzymes.
一氧化碳脱氢酶(CODHs)是生物地球化学一氧化碳(CO)循环的核心参与者,从生态水平到结构/分子水平都受到了广泛研究。在这两种类型的CODHs中,耐氧型CODHs使用通过吡喃蝶呤辅因子与蛋白质相连的双金属[CuSMo(=O)OH]中心,而对氧敏感的CODHs则含有一个[NiFeS-OH]簇。尽管我们对这两种类型的CODHs如何利用不同的活性位点催化CO与水氧化生成CO2、两个质子和两个电子(对于对氧敏感的CODHs而言是可逆反应)有了基本了解,但仍有许多问题未得到解答,尤其是关于中间态的电子结构。由于这些状态可能只有通过实验和理论方法的相互作用才能揭示,因此需要获得各种状态下活性位点结构的准确描述,进而需要生成具有良好衍射质量的晶体,并在元素特异性波长下收集数据,以便在混合态情况下确定元素的身份。本章描述了用于Cu,Mo-CODH和Ni,Fe-CODH结晶和结构分析的一般工作方案,有助于对这些重要金属酶进行机理研究。