High resolution crystal structure of a Mg2+-dependent porphobilinogen synthase

被引:70
作者
Frankenberg, N
Erskine, PT
Cooper, JB
Shoolingin-Jordan, PM
Jahn, D
Heinz, DW
机构
[1] Univ Freiburg, Inst Organ Chem & Biochem, D-79104 Freiburg, Germany
[2] Univ Southampton, Sch Biol Sci, E Southampton SO16 7PX, England
[3] Gesell Biotechnol Forsch GmbH, Strukturforsch, D-38124 Braunschweig, Germany
关键词
porphobilinogen synthase; crystal structure; Pseudomonas aeruginosa; tetrapyrrole biosynthesis; metal binding;
D O I
10.1006/jmbi.1999.2808
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
Common to the biosynthesis of all known tetrapyrroles is the condensation of two molecules of 5-aminolevulinic acid to the pyrrole porphobilinogen catalyzed by the enzyme porphobilinogen synthase (PBGS). Two major classes of PBGS are known. Zn2+-dependent PBGSs are found in mammals, yeast and some bacteria including Escherichia coli, while Mg2+-dependent PBGSs are present mainly in plants and other bacteria. The crystal structure of the Mg2+-dependent PEGS from the human pathogen Pseudomonas aeruginosa in complex with the competitive inhibitor levulinic acid (LA) solved at 1.67 Angstrom resolution shows a homooctameric enzyme that consists of four asymmetric dimers. The monomers in each dimer differ from each other by having a "closed" and an "open" active site pocket. In the closed subunit, the active site is completely shielded from solvent by a well-defined lid that is partially disordered in the open subunit. A single molecule of LA binds to a mainly hydrophobic pocket in each monomer where it is covalently attached via a Schiff base to an active site lysine residue. Whereas no metal ions are found in the active site of both monomers, a single well-defined and highly hydrated Mg2+ is present only in the closed form about 14 Angstrom away from the Schiff base forming nitrogen atom of the active site lysine. We conclude that the observed differences in the active sites of both monomers might be induced by Mg2+-binding to this remote site and propose a structure-based mechanism for this allosteric Mg2+ in rate enhancement. (C) 1999 Academic Press.
引用
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页码:591 / 602
页数:12
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