Sarapusit Songklod, Lertkiatmongkol Panida, Duangkaew Panida, Rongnoparut Pornpimol
Department of Biochemistry, Faculty of Science, Burapha University, Chonburi 20131, Thailand.
Int J Mol Sci. 2013 Jan 16;14(1):1788-801. doi: 10.3390/ijms14011788.
Malaria is one of the most dangerous mosquito-borne diseases in many tropical countries, including Thailand. Studies in a deltamethrin resistant strain of Anopheles minimus mosquito, suggest cytochrome P450 enzymes contribute to the detoxification of pyrethroid insecticides. Purified A. minimus CYPOR enzyme (AnCYPOR), which is the redox partner of cytochrome P450s, loses flavin-adenosine di-nucleotide (FAD) and FLAVIN mono-nucleotide (FMN) cofactors that affect its enzyme activity. Replacement of leucine residues at positions 86 and 219 with phenylalanines in FMN binding domain increases FMN binding, enzyme stability, and cytochrome c reduction activity. Membrane-Bound L86F/L219F-AnCYPOR increases A. minimus P450-mediated pyrethroid metabolism in vitro. In this study, we constructed a comparative model structure of AnCYPOR using a rat CYPOR structure as a template. Overall model structure is similar to rat CYPOR, with some prominent differences. Based on primary sequence and structural analysis of rat and A. minimus CYPOR, C427R, W678A, and W678H mutations were generated together with L86F/L219F resulting in three soluble Δ55 triple mutants. The C427R triple AnCYPOR mutant retained a higher amount of FAD binding and increased cytochrome c reduction activity compared to wild-type and L86F/L219F-Δ55AnCYPOR double mutant. However W678A and W678H mutations did not increase FAD and NAD(P)H bindings. The L86F/L219F double and C427R triple membrane-bound AnCYPOR mutants supported benzyloxyresorufin O-deakylation (BROD) mediated by mosquito CYP6AA3 with a two- to three-fold increase in efficiency over wild-type AnCYPOR. The use of rat CYPOR in place of AnCYPOR most efficiently supported CYP6AA3-mediated BROD compared to all AnCYPORs.
疟疾是包括泰国在内的许多热带国家中最危险的蚊媒疾病之一。对微小按蚊溴氰菊酯抗性品系的研究表明,细胞色素P450酶有助于拟除虫菊酯类杀虫剂的解毒。纯化的微小按蚊CYPOR酶(AnCYPOR)是细胞色素P450的氧化还原伴侣,会失去影响其酶活性的黄素腺嘌呤二核苷酸(FAD)和黄素单核苷酸(FMN)辅因子。在FMN结合结构域中,将第86位和第219位的亮氨酸残基替换为苯丙氨酸可增加FMN结合、酶稳定性和细胞色素c还原活性。膜结合的L86F/L219F-AnCYPOR在体外可增强微小按蚊P450介导的拟除虫菊酯代谢。在本研究中,我们以大鼠CYPOR结构为模板构建了AnCYPOR的比较模型结构。总体模型结构与大鼠CYPOR相似,但存在一些显著差异。基于大鼠和微小按蚊CYPOR的一级序列和结构分析,与L86F/L219F一起产生了C427R、W678A和W678H突变,从而得到了三个可溶性Δ55三重突变体。与野生型和L86F/L219F-Δ55AnCYPOR双突变体相比,C427R三重AnCYPOR突变体保留了更高量的FAD结合,并增加了细胞色素c还原活性。然而,W678A和W678H突变并未增加FAD和NAD(P)H结合。L86F/L219F双突变体和C4 27R三重膜结合AnCYPOR突变体支持蚊CYP6AA3介导的苄氧基试卤灵O-脱烷基化(BROD),效率比野生型AnCYPOR提高了两到三倍。与所有AnCYPOR相比,使用大鼠CYPOR代替AnCYPOR最有效地支持CYP6AA3介导的BROD。