Ireland Kendra A, Kayrouz Chase M, Abbott Marissa L, Seyedsayamdost Mohammad R, Davis Katherine M
Department of Chemistry, Emory University, Atlanta, GA 30322, USA.
Department of Chemistry, Princeton University, Princeton, NJ 08544, USA.
Structure. 2025 Mar 6;33(3):528-538.e5. doi: 10.1016/j.str.2024.12.020. Epub 2025 Jan 24.
Thio/selenoimidazole Nπ-methyltransferases are an emerging family of enzymes catalyzing the final step in the production of the S/Se-containing histidine-derived antioxidants ovothiol and ovoselenol. These enzymes, prevalent in prokaryotes, show minimal sequence similarity to other methyltransferases, and the structural determinants of their reactivities remain poorly understood. Herein, we report ligand-bound crystal structures of OvsM from the ovoselenol pathway as well as a member of a previously unknown clade of standalone ovothiol-biosynthetic Nπ-methyltransferases, which we have designated OvoM. Unlike previously reported ovothiol methyltransferases, which are fused as a C-terminal domain to the sulfoxide synthase OvoA, OvoMs function independently. Comparative structural analyses reveal conserved, ligand-induced conformational changes, suggesting similar behavior in dual-domain OvoA enzymes. Mutagenesis supports a model where OvoA domain rearrangement facilitates substrate recognition via a critical Tyr residue in the domain linker. Biochemical studies identify an essential active-site Asp, likely serving as a catalytic base in the S2-like nucleophilic substitution reaction.
硫/硒咪唑Nπ-甲基转移酶是一类新兴的酶家族,催化含硫/硒的组氨酸衍生抗氧化剂卵硫醇和卵硒醇生成过程中的最后一步反应。这些酶在原核生物中普遍存在,与其他甲基转移酶的序列相似性极低,其反应性的结构决定因素仍知之甚少。在此,我们报道了来自卵硒醇合成途径的OvsM以及一个先前未知的独立卵硫醇生物合成Nπ-甲基转移酶分支成员(我们将其命名为OvoM)的配体结合晶体结构。与先前报道的作为C端结构域与亚砜合酶OvoA融合的卵硫醇甲基转移酶不同,OvoM独立发挥作用。比较结构分析揭示了保守的、配体诱导的构象变化,表明在双结构域OvoA酶中存在类似行为。诱变实验支持了一个模型,即OvoA结构域重排通过结构域连接区中的一个关键酪氨酸残基促进底物识别。生化研究确定了一个必需的活性位点天冬氨酸,它可能在类似S2的亲核取代反应中作为催化碱。