Lecerof David, Fodje Michel N, Alvarez León Román, Olsson Ulf, Hansson Andreas, Sigfridsson Emma, Ryde Ulf, Hansson Mats, Al-Karadaghi Salam
Department of Molecular Biophysics, Center for Chemistry and Chemical Engineering, Lund University, PO Box 124, 221 00 Lund, Sweden.
J Biol Inorg Chem. 2003 Apr;8(4):452-8. doi: 10.1007/s00775-002-0436-1. Epub 2003 Jan 18.
Ferrochelatase, the terminal enzyme in heme biosynthesis, catalyses metal insertion into protoporphyrin IX. The location of the metal binding site with respect to the bound porphyrin substrate and the mode of metal binding are of central importance for understanding the mechanism of porphyrin metallation. In this work we demonstrate that Zn(2+), which is commonly used as substrate in assays of the ferrochelatase reaction, and Cd(2+), an inhibitor of the enzyme, bind to the invariant amino acids His183 and Glu264 and water molecules, all located within the porphyrin binding cleft. On the other hand, Mg(2+), which has been shown to bind close to the surface at 7 A from His183, was largely absent from its site. Activity measurements demonstrate that Mg(2+) has a stimulatory effect on the enzyme, lowering K(M) for Zn(2+) from 55 to 24 micro M. Changing one of the Mg(2+) binding residues, Glu272, to serine abolishes the effect of Mg(2+). It is proposed that prior to metal insertion the metal may form a sitting-atop (SAT) complex with the invariant His-Glu couple and the porphyrin. Metal binding to the Mg(2+) site may stimulate metal release from the protein ligands and its insertion into the porphyrin.
亚铁螯合酶是血红素生物合成的末端酶,催化金属插入原卟啉IX。金属结合位点相对于结合的卟啉底物的位置以及金属结合模式对于理解卟啉金属化机制至关重要。在这项工作中,我们证明了在亚铁螯合酶反应测定中常用作底物的Zn(2+)和该酶的抑制剂Cd(2+),与不变氨基酸His183和Glu264以及水分子结合,所有这些都位于卟啉结合裂隙内。另一方面,已证明在距His183 7埃处靠近表面结合的Mg(2+),在其位点基本不存在。活性测量表明,Mg(2+)对该酶有刺激作用,将Zn(2+)的K(M)从55微摩尔降至24微摩尔。将Mg(2+)结合残基之一Glu272替换为丝氨酸可消除Mg(2+)的作用。有人提出,在金属插入之前,金属可能与不变的His-Glu对和卟啉形成顶位(SAT)复合物。金属与Mg(2+)位点的结合可能刺激金属从蛋白质配体中释放并插入卟啉中。