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来自黄孢原毛平革菌的锰过氧化物酶。一种基于同源性的分子模型。

Manganese peroxidase from Phanerochaete chrysosporium. A homology-based molecular model.

作者信息

Selvaggini C, Salmona M, De Gioia L

机构信息

Istituto di Ricerche Farmacologiche Mario Negri, Milano, Italy.

出版信息

Eur J Biochem. 1995 Mar 15;228(3):955-61. doi: 10.1111/j.1432-1033.1995.0955m.x.

Abstract

A detailed three-dimensional model of manganese peroxidase was constructed using lignine peroxidase as the structural scaffold. This is the only protein in the peroxidase family except for cytochrome c peroxidase for which a resolved crystal structure is available. The model was built using the following procedure: (a) structurally preserved regions were derived from similar regions in the sequence alignment of the two proteins; (b) non-similar regions were modelled by searching a set of resolved protein structures for fragments which fitted in geometrically and choosing the best fitting fragment. Side chains were constructed by calculating rotamer-rotamer interaction energies and minimizing intramolecular energy. Model refinement was performed by molecular mechanics calculation. The quality of the model was assessed on the basis of the propensity of the amino acids to be inserted into regular secondary-structure elements and to be exposed to solvent. All the lignine peroxidase regions not used for model construction because of the lack of similarity, except the helix fragment Leu261-Phe269, correspond to external loops, suggesting reliable modelling. The manganese peroxidase model structure was analyzed in detail and several functionally relevant structural features were predicted, the most important being: (a) the very close structural similarity between lignine and manganese peroxidase active sites, suggesting a similar mode of hydrogen peroxide activation; (b) the substitution of polar residues for the hydrophobic amino acids exposed at the edge of the channel involved in substrate recognition in lignine peroxidase, suggesting that manganese peroxidase does not directly bind aromatic substrates; (c) the location of residues potentially able to bind Mn2+, spatially positioned on the side of the 3-CH3 heme edge.

摘要

以木质素过氧化物酶作为结构支架构建了锰过氧化物酶的详细三维模型。这是过氧化物酶家族中除细胞色素c过氧化物酶外唯一具有解析晶体结构的蛋白质。该模型的构建采用了以下步骤:(a) 结构保留区域源自两种蛋白质序列比对中的相似区域;(b) 通过在一组解析的蛋白质结构中搜索几何匹配的片段并选择最佳匹配片段来对非相似区域进行建模。通过计算旋转异构体 - 旋转异构体相互作用能并最小化分子内能量来构建侧链。通过分子力学计算进行模型优化。基于氨基酸插入规则二级结构元件和暴露于溶剂的倾向来评估模型的质量。由于缺乏相似性而未用于模型构建的所有木质素过氧化物酶区域,除了螺旋片段Leu261 - Phe269,都对应于外部环,这表明建模可靠。对锰过氧化物酶模型结构进行了详细分析,并预测了几个与功能相关的结构特征,其中最重要的是:(a) 木质素过氧化物酶和锰过氧化物酶活性位点之间非常紧密的结构相似性,表明过氧化氢激活模式相似;(b) 在木质素过氧化物酶中参与底物识别的通道边缘暴露的疏水氨基酸被极性残基取代,这表明锰过氧化物酶不直接结合芳香族底物;(c) 潜在能够结合Mn2 +的残基的位置,在空间上位于3 - CH3血红素边缘的一侧。

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