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NADPH-cytochrome P450 oxidoreductase from the mosquito Anopheles minimus: kinetic studies and the influence of Leu86 and Leu219 on cofactor binding and protein stability§

机译:蚊小按蚊的NADPH-细胞色素P450氧化还原酶:动力学研究以及Leu86和Leu219对辅因子结合和蛋白质稳定性的影响§

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摘要

NADPH-cytochrome c oxidoreductase from the mosquito Anopheles minimus lacking the first 55 amino acid residues was expressed in E. coli. The purified enzyme loses FMN, leading to an unstable protein and subsequent aggregation. To understand the basis for the instability, we constructed single and triple mutants of L86F, L219F, and P456A, with the first two residues in the FMN domain and the third in the FAD domain. The triple mutant was purified in high yield with stoichiometries of 0.97 FMN and 0.55 FAD. Deficiency in FAD content was overcome by addition of exogenous FAD to the enzyme. Both the wild-type and the triple mutant follow a two-site Ping-Pong mechanism with similar kinetic constants arguing against any global structural changes. Analysis of the single mutants indicates that the proline to alanine substitution has no impact, but that both leucine to phenylalanine substitutions are essential for FMN binding and maximum stability of the enzyme.
机译:缺少前55个氨基酸残基的小蚊按蚊的NADPH-细胞色素c氧化还原酶在大肠杆菌中表达。纯化的酶失去FMN,导致蛋白质不稳定并随后聚集。为了解不稳定性的基础,我们构建了L86F,L219F和P456A的单突变体和三突变体,前两个残基位于FMN域中,第三个残基位于FAD域中。该三重突变体以0.97 FMN和0.55 FAD的化学计量高纯度地纯化。通过向酶中添加外源FAD可以克服FAD含量不足的问题。野生型和三重突变体均遵循两点乒乓机制,具有相似的动力学常数,反对任何整体结构变化。对单个突变体的分析表明脯氨酸对丙氨酸的取代没有影响,但是亮氨酸对苯丙氨酸的取代对于FMN结合和酶的最大稳定性都是必不可少的。

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