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Novel Haloperoxidase from the Agaric Basidiomycete Agrocybe aegerita Oxidizes Aryl Alcohols and Aldehydes

机译:新型的从木杆介孢菌Agrocybe aegerita的卤过氧化物酶氧化芳醇和醛类。

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摘要

Agrocybe aegerita, a bark mulch- and wood-colonizing basidiomycete, was found to produce a peroxidase (AaP) that oxidizes aryl alcohols, such as veratryl and benzyl alcohols, into the corresponding aldehydes and then into benzoic acids. The enzyme also catalyzed the oxidation of typical peroxidase substrates, such as 2,6-dimethoxyphenol (DMP) or 2,2′-azinobis-(3-ethylbenzothiazoline-6-sulfonate) (ABTS). A. aegerita peroxidase production depended on the concentration of organic nitrogen in the medium, and highest enzyme levels were detected in the presence of soybean meal. Two fractions of the enzyme, AaP I and AaP II, which had identical molecular masses (46 kDa) and isoelectric points of 4.6 to 5.4 and 4.9 to 5.6, respectively (corresponding to six different isoforms), were identified after several steps of purification, including anion- and cation-exchange chromatography. The optimum pH for the oxidation of aryl alcohols was found to be around 7, and the enzyme required relatively high concentrations of H2O2 (2 mM) for optimum activity. The apparent Km values for ABTS, DMP, benzyl alcohol, veratryl alcohol, and H2O2 were 37, 298, 1,001, 2,367 and 1,313 μM, respectively. The N-terminal amino acid sequences of the main AaP II spots blotted after two-dimensional gel electrophoresis were almost identical and exhibited almost no homology to the sequences of other peroxidases from basidiomycetes, but they shared the first three amino acids, as well as two additional amino acids, with the heme chloroperoxidase (CPO) from the ascomycete Caldariomyces fumago. This finding is consistent with the fact that AaP halogenates monochlorodimedone, the specific substrate of CPO. The existence of haloperoxidases in basidiomycetous fungi may be of general significance for the natural formation of chlorinated organic compounds in forest soils.
机译:发现了农杆菌aegerita,一种树皮覆盖和木材定殖的担子菌,可产生一种过氧化物酶(AaP),该过氧化物酶将芳基醇(如藜芦醇和苄醇)氧化为相应的醛,然后氧化为苯甲酸。该酶还催化典型的过氧化物酶底物的氧化,例如2,6-二甲氧基苯酚(DMP)或2,2'-叠氮基双-(3-乙基苯并噻唑啉-6-磺酸盐)(ABTS)。埃及曲霉过氧化物酶的产生取决于培养基中有机氮的浓度,在豆粕存在的情况下检测到最高的酶水平。经过几个纯化步骤后,鉴定出两部分酶AaP I和AaP II,它们具有相同的分子量(46 kDa),等电点分别为4.6至5.4和4.9至5.6(对应于六个不同的同工型),包括阴离子交换色谱和阳离子交换色谱。发现用于芳基醇氧化的最佳pH约为7,并且该酶需要相对高浓度的H 2 O 2(2mM)以具有最佳活性。 ABTS,DMP,苯甲醇,藜芦醇和H2O2的表观Km值分别为37、298、1,001、2,367和1,313μM。二维凝胶电泳后印迹的主要AaP II点的N末端氨基酸序列几乎相同,与来自担子菌的其他过氧化物酶的序列几乎没有同源性,但是它们共享前三个氨基酸以及两个额外的氨基酸,以及来自子囊线虫(Caldariamyces fumago)的血红素氯过氧化物酶(CPO)。这一发现与AaP卤化单氯二甲酮(CPO的特定底物)这一事实是一致的。担子菌真菌中卤过氧化物酶的存在对于森林土壤中氯化有机化合物的自然形成可能具有普遍意义。

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