Henriksen A, Mirza O, Indiani C, Teilum K, Smulevich G, Welinder K G, Gajhede M
Protein Structure Group, Department of Chemistry, University of Copenhagen, Universitetsparken 5, DK-2100, Copenhagen, Denmark.
Protein Sci. 2001 Jan;10(1):108-15. doi: 10.1110/ps.37301.
Soybean seed coat peroxidase (SBP) is a peroxidase with extraordinary stability and catalytic properties. It belongs to the family of class III plant peroxidases that can oxidize a wide variety of organic and inorganic substrates using hydrogen peroxide. Because the plant enzyme is a heterogeneous glycoprotein, SBP was produced recombinant in Escherichia coli for the present crystallographic study. The three-dimensional structure of SBP shows a bound tris(hydroxymethyl)aminomethane molecule (TRIS). This TRIS molecule has hydrogen bonds to active site residues corresponding to the residues that interact with the small phenolic substrate ferulic acid in the horseradish peroxidase C (HRPC):ferulic acid complex. TRIS is positioned in what has been described as a secondary substrate-binding site in HRPC, and the structure of the SBP:TRIS complex indicates that this secondary substrate-binding site could be of functional importance. SBP has one of the most solvent accessible delta-meso haem edge (the site of electron transfer from reducing substrates to the enzymatic intermediates compound I and II) so far described for a plant peroxidase and structural alignment suggests that the volume of Ile74 is a factor that influences the solvent accessibility of this important site. A contact between haem C8 vinyl and the sulphur atom of Met37 is observed in the SBP structure. This interaction might affect the stability of the haem group by stabilisation/delocalisation of the porphyrin pi-cation of compound I.
大豆种皮过氧化物酶(SBP)是一种具有非凡稳定性和催化特性的过氧化物酶。它属于III类植物过氧化物酶家族,能够利用过氧化氢氧化多种有机和无机底物。由于这种植物酶是一种异源糖蛋白,为了当前的晶体学研究,在大肠杆菌中重组生产了SBP。SBP的三维结构显示有一个结合的三(羟甲基)氨基甲烷分子(TRIS)。这个TRIS分子与活性位点残基形成氢键,这些残基对应于辣根过氧化物酶C(HRPC):阿魏酸复合物中与小酚类底物阿魏酸相互作用的残基。TRIS位于HRPC中被描述为二级底物结合位点的位置,SBP:TRIS复合物的结构表明这个二级底物结合位点可能具有功能重要性。SBP具有迄今为止所描述的植物过氧化物酶中溶剂可及性最高的δ-中血红素边缘之一(从还原底物到酶中间体化合物I和II的电子转移位点),结构比对表明Ile74的体积是影响这个重要位点溶剂可及性的一个因素。在SBP结构中观察到血红素C8乙烯基与Met37的硫原子之间存在接触。这种相互作用可能通过稳定/离域化合物I的卟啉π-阳离子来影响血红素基团的稳定性。