Department of Biochemistry, Virginia Tech, Blacksburg, Virginia 24061, USA.
Biochemistry. 2010 Aug 10;49(31):6777-83. doi: 10.1021/bi100291n.
Ferrichrome is a hydroxamate-containing siderophore produced by the pathogenic fungus Aspergillus fumigatus under iron-limiting conditions. This siderophore contains N(5)-hydroxylated l-ornithines essential for iron binding. A. fumigatus siderophore A (Af SidA) catalyzes the flavin- and NADPH-dependent hydroxylation of l-ornithine in ferrichrome biosynthesis. Af SidA was recombinantly expressed and purified as a soluble tetramer and is the first member of this class of flavin monooxygenases to be isolated with a bound flavin cofactor. The enzyme showed typical saturation kinetics with respect to l-ornithine while substrate inhibition was observed at high concentrations of NADPH and NADH. Increasing amounts of hydrogen peroxide were measured as a function of reduced nicotinamide coenzyme concentration, indicating that inhibition was caused by increased uncoupling. Af SidA is highly specific for its amino acid substrate, only hydroxylating l-ornithine. An 8-fold preference in the catalytic efficiency was determined for NADPH compared to NADH. In the absence of substrate, Af SidA can be reduced by NADPH, and a C4a-(hydro)peroxyflavin intermediate is observed. The decay of this intermediate is accelerated by l-ornithine binding. This intermediate was only stabilized by NADPH and not by NADH, suggesting a role for NADP(+) in the stabilization of intermediates in the reaction of Af SidA. NADP(+) is a competitive inhibitor with respect to NADPH, demonstrating that Af SidA forms a ternary complex with NADP(+) and l-ornithine during catalysis. The data suggest that Af SidA likely proceeds by a sequential kinetic mechanism.
铁载体是一种含有羟肟酸的铁载体,由致病真菌烟曲霉在缺铁条件下产生。这种铁载体含有 N(5)-羟基化 l-鸟氨酸,这是铁结合所必需的。烟曲霉铁载体 A(AfSidA)催化 ferrichrome 生物合成中 l-鸟氨酸的黄素和 NADPH 依赖性羟化。AfSidA 作为可溶性四聚体被重组表达和纯化,是分离的第一个具有结合黄素辅因子的此类黄素单加氧酶成员。该酶对 l-鸟氨酸表现出典型的饱和动力学,而在 NADPH 和 NADH 的高浓度下观察到底物抑制。随着还原型烟酰胺辅酶浓度的增加,测量了更多的过氧化氢,表明抑制是由于去偶增加引起的。AfSidA 对其氨基酸底物具有高度特异性,仅羟基化 l-鸟氨酸。与 NADH 相比,NADPH 的催化效率有 8 倍的偏好。在没有底物的情况下,AfSidA 可以被 NADPH 还原,并且观察到 C4a-(氢)过氧黄素中间体。该中间体的衰减通过 l-鸟氨酸结合而加速。这种中间体仅被 NADPH 而不是 NADH 稳定,表明 NADP(+) 在 AfSidA 反应中中间体的稳定中起作用。NADP(+) 是 NADPH 的竞争性抑制剂,表明 AfSidA 在催化过程中与 NADP(+) 和 l-鸟氨酸形成三元复合物。数据表明,AfSidA 可能通过顺序动力学机制进行。