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Mn(II) Oxidation Is Catalyzed by Heme Peroxidases in Aurantimonas manganoxydans Strain SI85-9A1 and Erythrobacter sp. Strain SD-21

机译:在 Aurantimonas manganoxydans菌株SI85-9A1和Erythrobacter sp。中血红素过氧化物酶催化Mn(II)氧化。 SD-21菌株

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摘要

A new type of manganese-oxidizing enzyme has been identified in two alphaproteobacteria, “Aurantimonas manganoxydans” strain SI85-9A1 and Erythrobacter sp. strain SD-21. These proteins were identified by tandem mass spectrometry of manganese-oxidizing bands visualized by native polyacrylamide gel electrophoresis in-gel activity assays and fast protein liquid chromatography-purified proteins. Proteins of both alphaproteobacteria contain animal heme peroxidase and hemolysin-type calcium binding domains, with the 350-kDa active Mn-oxidizing protein of A. manganoxydans containing stainable heme. The addition of both Ca2+ ions and H2O2 to the enriched protein from Aurantimonas increased manganese oxidation activity 5.9-fold, and the highest activity recorded was 700 μM min−1 mg−1. Mn(II) is oxidized to Mn(IV) via an Mn(III) intermediate, which is consistent with known manganese peroxidase activity in fungi. The Mn-oxidizing protein in Erythrobacter sp. strain SD-21 is 225 kDa and contains only one peroxidase domain with strong homology to the first 2,000 amino acids of the peroxidase protein from A. manganoxydans. The heme peroxidase has tentatively been named MopA (manganese-oxidizing peroxidase) and sheds new light on the molecular mechanism of Mn oxidation in prokaryotes.
机译:在两种α-变形杆菌中发现了一种新型的锰氧化酶,即“ Aurantimonas manganoxydans”菌株SI85-9A1和红杆菌。 SD-21株。这些蛋白质通过锰氧化带的串联质谱法鉴定,锰氧化带通过天然聚丙烯酰胺凝胶电泳凝胶内活性测定法和快速蛋白质液相色谱纯化的蛋白质可视化。两种α蛋白变形杆菌的蛋白质均包含动物血红素过氧化物酶和溶血素型钙结合结构域,而具有可染血红素的锰果木霉的350 kDa活性锰氧化蛋白。向来自Aurantimonas的富集蛋白质中同时添加Ca 2 + 离子和H2O2可使锰的氧化活性增加5.9倍,记录的最高活性为700μMmin -1 mg -1 。 Mn(II)通过Mn(III)中间体氧化为Mn(IV),这与真菌中已知的锰过氧化物酶活性是一致的。红细菌中的锰氧化蛋白SD-21菌株为225 kDa,仅包含一个过氧化物酶结构域,该结构域与A. manganoxydans过氧化物酶蛋白的前2,000个氨基酸具有很强的同源性。血红素过氧化物酶暂定名为MopA(锰氧化过氧化物酶),为原核生物中Mn氧化的分子机理提供了新的思路。

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