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黄孢原毛平革菌锰过氧化物酶2.06埃分辨率的晶体结构。

The crystal structure of manganese peroxidase from Phanerochaete chrysosporium at 2.06-A resolution.

作者信息

Sundaramoorthy M, Kishi K, Gold M H, Poulos T L

机构信息

Department of Molecular Biology and Biochemistry, University of California, Irvine 92717.

出版信息

J Biol Chem. 1994 Dec 30;269(52):32759-67.

PMID:7806497
Abstract

The crystal structure of manganese peroxidase (MnP) from the lignin-degrading basidiomycetous fungus Phanerochaete chrysosporium has been solved using molecular replacement techniques and refined to R = 0.20 at 2.0 A. The overall structure is similar to that of two other fungal peroxidases, lignin peroxidase from P. chrysosporium and Arthromyces ramosus peroxidase. Like the other fungal peroxidases, MnP has two structural calcium ions. MnP also has two N-acetylglucosamine residues N-linked to Asn131 that are readily visible in the electron density map. The active site, consisting of a proximal His ligand H-bonded to an Asp residue and a distal side peroxide binding pocket consisting of a catalytic His and Arg, is the same as in the aforementioned fungal peroxidases as well as yeast cytochrome c peroxidase. MnP differs in having five rather than four disulfide bonds. The additional disulfide bond, Cys341-Cys348, is located near the C terminus of the polypeptide chain. Importantly, a new cation binding site, which we propose is the manganese-binding site of MnP, was located in the crystal structure. The ligands constituting the Mn(2+)-binding site include Asp179, Glu35, Glu39, a heme propionate, and two water molecules. Electron transfer from Mn2+ to the heme edge or iron center is envisioned to occur through a sigma-bonded pathway along a heme propionate.

摘要

利用分子置换技术解析了木质素降解担子菌黄孢原毛平革菌中锰过氧化物酶(MnP)的晶体结构,并在2.0埃分辨率下精修至R = 0.20。其整体结构与另外两种真菌过氧化物酶,即黄孢原毛平革菌的木质素过氧化物酶和分枝顶孢过氧化物酶相似。与其他真菌过氧化物酶一样,MnP有两个结构钙离子。MnP还具有两个与Asn131 N-连接的N-乙酰葡糖胺残基,在电子密度图中清晰可见。活性位点由一个与天冬氨酸残基氢键结合的近端组氨酸配体和一个由催化组氨酸和精氨酸组成的远端过氧化物结合口袋组成,与上述真菌过氧化物酶以及酵母细胞色素c过氧化物酶中的相同。MnP的不同之处在于有五个而非四个二硫键。额外的二硫键Cys341-Cys348位于多肽链的C末端附近。重要的是,在晶体结构中定位到一个新的阳离子结合位点,我们认为它是MnP的锰结合位点。构成Mn(2+)结合位点的配体包括Asp179、Glu35、Glu39、一个血红素丙酸酯和两个水分子。预计Mn2+向血红素边缘或铁中心的电子转移将通过沿着血红素丙酸酯的σ键途径发生。

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