The crystal structure of peanut peroxidase

被引:262
作者
Schuller, DJ
Ban, N
vanHuystee, RB
McPherson, A
Poulos, TL
机构
[1] UNIV CALIF IRVINE, DEPT MOLEC BIOL & BIOCHEM, IRVINE, CA 92717 USA
[2] UNIV CALIF RIVERSIDE, DEPT BIOCHEM, RIVERSIDE, CA 92521 USA
[3] UNIV WESTERN ONTARIO, DEPT PLANT SCI, LONDON, ON N6G 5B7, CANADA
[4] UNIV CALIF IRVINE, DEPT PHYSIOL & BIOPHYS, IRVINE, CA 92717 USA
关键词
calcium binding; crystal structure; glycosylation; heme protein; peroxidase;
D O I
10.1016/S0969-2126(96)00035-4
中图分类号
Q5 [生物化学]; Q7 [分子生物学];
学科分类号
071010 ; 081704 ;
摘要
Background: Peroxidases catalyze a wide variety of peroxide-dependent oxidations. Based on sequence alignments, heme peroxidases have been divided into three classes, Crystal structures are available for peroxidases of classes I and II, but until now no structure has been determined for class III, the classical extracellular plant peroxidases. Results: The crystal structure of peanut peroxidase has been solved to 2.7 Angstrom resolution, The helical fold is similar to that of known peroxidase structures. The 294-residue polypeptide chain is accompanied by a heme and two calcium ions, and there is some evidence of glycosylation. Conclusions: This is the first complete structure of a Glass III peroxidase and as such should serve as a model for other class III enzymes including the much-studied horseradish peroxidase. It may also aid in the interpretation of functional differences between the peroxidase classes. Ten helices conserved in class I and II peroxidases are also found in peanut peroxidase. Key residues of the heme environment and the location of two calcium ions are shared with class ii peroxidases. Peanut peroxidase contains three unique helices, two of which contribute to the substrate access channel leading to the heme edge.
引用
收藏
页码:311 / 321
页数:11
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