Department of Molecular Medicine, College of Medicine, University of South Florida, Tampa, Florida 33612, USA.
J Biol Chem. 2010 Dec 31;285(53):41836-42. doi: 10.1074/jbc.M110.174243. Epub 2010 Oct 21.
Ferrochelatase catalyzes the insertion of ferrous iron into protoporphyrin IX to form heme. The severe metal ion substrate inhibition observed during in vitro studies of the purified enzyme is almost completely eliminated by mutation of an active site histidine residue (His-287, murine ferrochelatase numbering) to leucine and reduced over 2 orders of magnitude by mutation of a nearby conserved phenylalanine residue (Phe-283) to leucine. Elimination of substrate inhibition had no effect on the apparent V(max) for Ni(2+), but the apparent K(m) was increased 100-fold, indicating that the integrity of the inhibitory binding site is important for the enzyme to turn over substrates rapidly at low micromolar metal ion concentrations. The inhibitory site was observed to have a pK(a) value of 8.0, and this value was reduced to 7.5 by the F283L mutation and to 7.4 in a naturally occurring positional variant observed in most bacterial ferrochelatases, murine ferrochelatase H287C. A H287N variant was also found to be substrate-inhibited, but unlike the H287C variant, pH dependence of substrate inhibition was largely eliminated. The data indicate that the inhibitory metal ion-binding site is composed of multiple residues but primarily defined by His-287 and Phe-283 and is crucial for optimal activity at low metal ion concentrations. It is proposed that this binding site may be important for ferrous iron acquisition and desolvation in vivo.
亚铁螯合酶催化亚铁离子插入原卟啉 IX 中形成血红素。在纯化酶的体外研究中观察到严重的金属离子底物抑制作用,通过突变活性位点组氨酸残基(鼠源亚铁螯合酶编号为 His-287)为亮氨酸几乎完全消除,通过突变附近保守的苯丙氨酸残基(Phe-283)为亮氨酸可降低 2 个数量级以上。消除底物抑制对 Ni(2+)的表观 V(max)没有影响,但表观 K(m)增加了 100 倍,表明抑制结合位点的完整性对于酶在低微摩尔金属离子浓度下快速翻转底物是重要的。观察到抑制性结合位点的 pK(a)值为 8.0,该值通过 F283L 突变降低至 7.5,在大多数细菌亚铁螯合酶中观察到的天然存在的位置变异体(鼠源亚铁螯合酶 H287C)中降低至 7.4。还发现 H287N 变体也受到底物抑制,但与 H287C 变体不同,底物抑制的 pH 依赖性在很大程度上被消除。数据表明,抑制性金属离子结合位点由多个残基组成,但主要由 His-287 和 Phe-283 定义,对于低金属离子浓度下的最佳活性至关重要。据推测,该结合位点对于体内亚铁离子的获取和去溶剂化可能很重要。