Périé F H, Sheng D, Gold M H
Department of Chemistry, Biochemistry and Molecular Biology, Oregon Graduate Institute of Science and Technology, Portland 97291-1000, USA.
Biochim Biophys Acta. 1996 Oct 17;1297(2):139-48. doi: 10.1016/s0167-4838(96)00096-9.
Two manganese peroxidase isozymes, MnP1 and MnP2, were purified from the extracellular medium of ligninolytic cultures of Dichomitus squalens. The proteins were purified to homogeneity using DEAE-Sepharose chromatography and Mono Q fast protein liquid chromatography. MnP1 and MnP2 have molecular masses of 48000 and 48900 Da, respectively, as determined by sodium dodecyl sulfate-polyacrylamide gel electrophoresis. Both isozymes are glycoproteins and each contains one iron protoporphyrin IX as a prosthetic group. The pl values of MnP1 and MnP2 are 4.15 and 3.90, respectively. N-Terminal amino-acid analysis suggests that these proteins are encoded by distinct genes. The Soret bands of the native ferric enzymes (408 nm and 406 nm, respectively) are shifted to 434 nm in the reduced enzymes and to 422 nm in the reduced-CO complexes. EPR g-values of the native enzymes are essentially identical to those for other MnPs and lignin peroxidases, and they confirm the high-spin state of the iron. The addition of 1 equivalent of H2O2 to either of the native ferric isozymes yields spectra which are characteristic of compound 1. Successive additions of 1 equivalent of ferrocyanide and 1 equivalent of H2O2 to the native enzymes yield spectra which are characteristic of compound II. Both MnP isozymes oxidize Mn2+ to Mn3+ in the presence of organic acid chelators. The MnP isozymes are produced by D. squalens only when the cells are grown in the presence of Mn.
从黄白卧孔菌木质素分解培养物的细胞外培养基中纯化出两种锰过氧化物酶同工酶,即MnP1和MnP2。使用DEAE-琼脂糖层析和Mono Q快速蛋白质液相层析将这些蛋白质纯化至同质。通过十二烷基硫酸钠-聚丙烯酰胺凝胶电泳测定,MnP1和MnP2的分子量分别为48000和48900 Da。两种同工酶均为糖蛋白,且每种都含有一个铁原卟啉IX作为辅基。MnP1和MnP2的pI值分别为4.15和3.90。N端氨基酸分析表明这些蛋白质由不同的基因编码。天然铁酶的Soret带(分别为408 nm和406 nm)在还原酶中移至434 nm,在还原-CO复合物中移至422 nm。天然酶的电子顺磁共振g值与其他锰过氧化物酶和木质素过氧化物酶的g值基本相同,并且证实了铁的高自旋状态。向任何一种天然铁同工酶中添加1当量的H2O2会产生化合物I的特征光谱。向天然酶中依次添加1当量的亚铁氰化物和1当量的H2O2会产生化合物II的特征光谱。在有机酸螯合剂存在下,两种MnP同工酶均将Mn2+氧化为Mn3+。只有当细胞在锰存在下生长时,黄白卧孔菌才会产生MnP同工酶。