Hakala Terhi K, Hildén Kristiina, Maijala Pekka, Olsson Cia, Hatakka Annele
Department of Applied Chemistry and Microbiology, University of Helsinki, P.O. Box 56, Biocenter 1, 00014 Helsinki, Finland.
Appl Microbiol Biotechnol. 2006 Dec;73(4):839-49. doi: 10.1007/s00253-006-0541-0. Epub 2006 Oct 10.
Manganese peroxidase (MnP) production in the white-rot basidiomycete Physisporinus rivulosus T241i was studied. Separate MnP isoforms were produced in carbon-limited liquid media supplemented with Mn(2+), veratryl alcohol, or sawdust. The isoforms had different pH ranges for the oxidation of Mn(2+) and 2,6-dimethoxyphenol. Although lignin degradation by white-rot fungi is often triggered by nitrogen depletion, MnPs of P. rivulosus were efficiently produced also in the presence of high-nutrient nitrogen, especially in cultures supplemented with veratryl alcohol. Two MnP encoding genes, mnpA and mnpB, were identified, and their corresponding cDNAs were characterized. Structurally, the genes showed marked dissimilarity, and the expression of the two genes implicated quantitative variation and differential regulation in response to manganese, veratryl alcohol, or sawdust. The variability in regulation and properties of the isoforms may widen the operating range for efficient lignin degradation by P. rivulosus.
对白腐担子菌Physisporinus rivulosus T241i中锰过氧化物酶(MnP)的产生进行了研究。在添加了Mn(2+)、藜芦醇或锯末的碳限制液体培养基中产生了不同的MnP同工型。这些同工型在氧化Mn(2+)和2,6-二甲氧基苯酚时具有不同的pH范围。虽然白腐真菌对木质素的降解通常由氮耗尽引发,但在高营养氮存在的情况下,尤其是在添加了藜芦醇的培养物中,P. rivulosus的MnP也能高效产生。鉴定出了两个编码MnP的基因mnpA和mnpB,并对其相应的cDNA进行了表征。在结构上,这些基因表现出明显的差异,两个基因的表达暗示了对锰、藜芦醇或锯末的定量变化和差异调节。同工型在调节和性质上的变异性可能会拓宽P. rivulosus有效降解木质素的操作范围。