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硫氧还蛋白合酶 EgtB-IV 的结构研究进展,其为卵巯基转移酶 OvoA 的同系物,具有ergothioneine 生物合成功能。

Structural insights into the convergent evolution of sulfoxide synthase EgtB-IV, an ergothioneine-biosynthetic homolog of ovothiol synthase OvoA.

机构信息

Department of Chemistry, Emory University, Atlanta, GA 30322, USA.

Department of Chemistry, Princeton University, Princeton, NJ 08544, USA.

出版信息

Structure. 2024 Nov 7;32(11):2013-2022.e5. doi: 10.1016/j.str.2024.08.006. Epub 2024 Aug 30.

Abstract

Non-heme iron-dependent sulfoxide/selenoxide synthases (NHISS) constitute a unique metalloenzyme class capable of installing a C-S/Se bond onto histidine to generate thio/selenoimidazole antioxidants, such as ergothioneine and ovothiol. These natural products are increasingly recognized for their health benefits. Among associated ergothioneine-biosynthetic enzymes, type IV EgtBs stand out, as they exhibit low sequence similarity with other EgtB subfamilies due to their recent divergence from the ovothiol-biosynthetic enzyme OvoA. Herein, we present crystal structures of two representative EgtB-IV enzymes, offering insights into the basis for this evolutionary convergence and enhancing our understanding of NHISS active site organization more broadly. The ability to interpret how key residues modulate substrate specificity and regioselectivity has implications for downstream identification of divergent reactivity within the NHISS family. To this end, we identify a previously unclassified clade of OvoA-like enzymes with a seemingly hybrid set of characteristics, suggesting they may represent an evolutionary intermediate between OvoA and EgtB-IV.

摘要

非血红素铁依赖的亚砜/硒氧化物合成酶(NHISS)构成了一类独特的金属酶,能够将 C-S/Se 键安装到组氨酸上,生成硫代/硒代咪唑抗氧化剂,如麦角硫因和卵硫醇。这些天然产物因其对健康的益处而越来越受到关注。在相关的麦角硫因生物合成酶中,第四型 EgtB 酶尤为突出,因为它们与其他 EgtB 亚家族的序列相似性较低,这是由于它们最近从卵硫醇生物合成酶 OvoA 中分化而来。本文呈现了两种代表性的 EgtB-IV 酶的晶体结构,深入了解了这种进化趋同的基础,并更广泛地增强了我们对 NHISS 活性位点组织的理解。解释关键残基如何调节底物特异性和区域选择性的能力,对下游识别 NHISS 家族中不同的反应性具有重要意义。为此,我们鉴定了一个以前未分类的 OvoA 样酶簇,它们具有一组看似混合的特征,表明它们可能代表 OvoA 和 EgtB-IV 之间的进化中间体。

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