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一种细菌乳过氧化物酶的生化与结构表征

Biochemical and Structural Characterisation of a Bacterial Lactoperoxidase.

作者信息

Pećanac Ognjen, Martin Caterina, Savino Simone, Rozeboom Henriette J, Fraaije Marco W, Lončar Nikola

机构信息

GECCO Biotech, Zernikepark 6, 9747 AN, Groningen, The Netherlands.

Molecular Enzymology Group, University of Groningen, Nijenborgh 3, 9747 AG, Groningen, The Netherlands.

出版信息

Chembiochem. 2025 Jan 14;26(2):e202400713. doi: 10.1002/cbic.202400713. Epub 2024 Nov 29.

Abstract

Peroxidases belong to a group of enzymes that are widely found in animals, plants and microorganisms. These enzymes are effective biocatalysts for a wide range of oxidations on various substrates. This work presents a biochemical and structural characterization of a novel heme-containing peroxidase from Cyanobacterium sp. TDX16, CyanoPOX. This cyanobacterial enzyme was successfully overexpressed in Escherichia coli as a soluble, heme-containing monomeric enzyme. Although CyanoPOX shares relatively low sequence identity (37 %) with bovine lactoperoxidase, it displays comparable biochemical properties. CyanoPOX is most stable and active in slightly acidic conditions (pH 6-6.5) and moderately thermostable (melting temperature around 48 °C). Several compounds that are typical substrates for mammalian lactoperoxidases were tested to establish the catalytic potential of CyanoPOX. Potassium iodide showed the highest catalytic efficiency (126 mM s), while various aromatic compounds were also readily converted. Structural elucidation of CyanoPOX confirmed the presence of a non-covalently bound b-type heme cofactor that is situated in the central core of the protein. Except for a highly similar overall structure, CyanoPOX also has a conserved active site pocket when compared with mammalian lactoperoxidases. Due to its catalytic properties and high expression in a bacterial host, this newly discovered peroxidase shows promise for applications.

摘要

过氧化物酶属于一类在动物、植物和微生物中广泛存在的酶。这些酶是多种底物上广泛氧化反应的有效生物催化剂。这项工作展示了来自蓝藻菌株TDX16的一种新型含血红素过氧化物酶(CyanoPOX)的生化和结构特征。这种蓝藻酶在大肠杆菌中成功过表达,成为一种可溶的、含血红素的单体酶。尽管CyanoPOX与牛乳铁过氧化物酶的序列同一性相对较低(37%),但它表现出相当的生化特性。CyanoPOX在微酸性条件(pH 6 - 6.5)下最稳定且活性最高,并且具有中等热稳定性(熔解温度约为48°C)。测试了几种哺乳动物乳铁过氧化物酶的典型底物化合物,以确定CyanoPOX的催化潜力。碘化钾显示出最高的催化效率(126 mM·s),同时各种芳香族化合物也易于被转化。CyanoPOX的结构解析证实了在蛋白质中心核心位置存在一个非共价结合的b型血红素辅因子。除了整体结构高度相似外,与哺乳动物乳铁过氧化物酶相比,CyanoPOX还具有一个保守的活性位点口袋。由于其催化特性以及在细菌宿主中的高表达,这种新发现的过氧化物酶具有应用前景。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/5f37/11776367/7bea6306ba7d/CBIC-26-e202400713-g002.jpg

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