Department of Chemistry, University of Wisconsin-Madison, Madison, WI, United States.
Department of Chemistry, University of Wisconsin-Madison, Madison, WI, United States.
Methods Enzymol. 2024;703:121-145. doi: 10.1016/bs.mie.2024.05.022. Epub 2024 Jun 15.
Thiol dioxygenases (TDOs) are non‑heme Fe(II)‑dependent enzymes that catalyze the O-dependent oxidation of thiol substrates to their corresponding sulfinic acids. Six classes of TDOs have thus far been identified and two, cysteine dioxygenase (CDO) and cysteamine dioxygenase (ADO), are found in eukaryotes. All TDOs belong to the cupin superfamily of enzymes, which share a common β‑barrel fold and two cupin motifs: G(X)HXH(X)E(X)G and G(X)PXG(X)H(X)N. Crystal structures of TDOs revealed that these enzymes contain a relatively rare, neutral 3‑His iron‑binding facial triad. Despite this shared metal-binding site, TDOs vary greatly in their secondary coordination spheres. Site‑directed mutagenesis has been used extensively to explore the impact of changes in secondary sphere residues on substrate specificity and enzymatic efficiency. This chapter summarizes site-directed mutagenesis studies of eukaryotic TDOs, focusing on the tools and practicality of non‑standard amino acid incorporation.
硫醇双加氧酶(TDO)是一类非血红素 Fe(II)依赖性酶,可催化硫醇底物的 O-依赖性氧化生成相应的亚磺酸。目前已鉴定出 6 类 TDO,其中 2 类(半胱氨酸双加氧酶 (CDO)和半胱胺双加氧酶 (ADO))存在于真核生物中。所有 TDO 都属于 cupin 超家族的酶,它们具有共同的β-桶折叠和两个 cupin 基序:G(X)HXH(X)E(X)G 和 G(X)PXG(X)H(X)N。TDO 的晶体结构表明,这些酶含有一个相对罕见的中性 3-His 铁结合面三角。尽管具有共享的金属结合位点,但 TDO 在其二级配位球上差异很大。定点突变已广泛用于研究二级球残基的变化对底物特异性和酶效率的影响。本章总结了真核 TDO 的定点突变研究,重点介绍了非标准氨基酸掺入的工具和实用性。