Hildén Kristiina, Mäkelä Miia R, Steffen Kari T, Hofrichter Martin, Hatakka Annele, Archer David B, Lundell Taina K
Department of Food and Environmental Sciences, Viikki Biocenter, University of Helsinki, Finland; School of Biology, University of Nottingham, UK.
Department of Food and Environmental Sciences, Viikki Biocenter, University of Helsinki, Finland.
Fungal Genet Biol. 2014 Nov;72:131-136. doi: 10.1016/j.fgb.2014.03.002. Epub 2014 Mar 20.
Agrocybe praecox is a litter-decomposing Basidiomycota species of the order Agaricales, and is frequently found in forests and open woodlands. A. praecox grows in leaf-litter and the upper soil and is able to colonize bark mulch and wood chips. It produces extracellular manganese peroxidase (MnP) activities and mineralizes synthetic lignin. In this study, the A. praecox MnP1 isozyme was purified, cloned and enzymatically characterized. The enzyme catalysed the oxidation of Mn(2+) to Mn(3+), which is the specific reaction for manganese-dependent class II heme-peroxidases, in the presence of malonate as chelator with an activity maximum at pH 4.5; detectable activity was observed even at pH 7.0. The coding sequence of the mnp1 gene demonstrates a short-type of MnP protein with a slightly modified Mn(2+) binding site. Thus, A. praecox MnP1 may represent a novel group of atypical short-MnP enzymes. In lignocellulose-containing cultures composed of cereal bran or forest litter, transcription of mnp1 gene was followed by quantitative real-time RT-PCR. On spruce needle litter, mnp1 expression was more abundant than on leaf litter after three weeks cultivation. However, the expression was constitutive in wheat and rye bran cultures. Our data show that the atypical MnP of A. praecox is able to catalyse Mn(2+) oxidation, which suggests its involvement in lignocellulose decay by this litter-decomposer.
早生田头菇是一种属于伞菌目的分解落叶的担子菌物种,常见于森林和开阔林地。早生田头菇生长在落叶层和上层土壤中,能够在树皮覆盖物和木屑上定殖。它能产生细胞外锰过氧化物酶(MnP)活性并使合成木质素矿化。在本研究中,对早生田头菇的MnP1同工酶进行了纯化、克隆和酶学特性分析。该酶在丙二酸作为螯合剂存在的情况下,能将Mn(2+)氧化为Mn(3+),这是依赖锰的II类血红素过氧化物酶的特异性反应,在pH 4.5时活性最高;即使在pH 7.0时也能观察到可检测的活性。mnp1基因的编码序列显示出一种短型的MnP蛋白,其Mn(2+)结合位点略有修饰。因此,早生田头菇MnP1可能代表了一类新型的非典型短MnP酶。在由谷糠或森林落叶组成的含木质纤维素培养物中,通过定量实时RT-PCR跟踪mnp1基因的转录情况。在云杉针叶落叶上培养三周后,mnp1的表达比在阔叶落叶上更为丰富。然而,在小麦和黑麦麸培养物中,该表达是组成型的。我们的数据表明,早生田头菇的非典型MnP能够催化Mn(2+)氧化,这表明它参与了这种落叶分解者对木质纤维素的分解过程。