首页> 外文期刊>Archives of Insect Biochemistry and Physiology >Characterization of Anopheles minimus CYP6AA3 expressed in a recombinant baculovirus system.
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Characterization of Anopheles minimus CYP6AA3 expressed in a recombinant baculovirus system.

机译:在重组杆状病毒系统中表达的微小按蚊CYP6AA3的表征。

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Metabolism by cytochrome P450 monooxygenases is a major mechanism implicated in resistance of insects to insecticides, including pyrethroids. We previously isolated the cytochrome P450 CYP6AA3 from deltamethrin-selected resistant strain of Anopheles minimus mosquito, a major malaria vector in Thailand. In the present study, we further investigated the role of CYP6AA3 enzyme in deltamethrin metabolism in vitro. The CYP6AA3 was expressed in Spodoptera frugiperda (Sf9) insect cells via baculovirus-mediated expression system. The enzymatic activity of CYP6AA3 in deltamethrin metabolism was characterized after being reconstituted with An. minimus NADPH-cytochrome P450 reductase and a NADPH-regenerating system. The contribution of CYP6AA3 responsible for deltamethrin metabolism was determined by measurement of deltamethrin disappearance following the incubation period and deltamethrin-derived compounds were detected using combined gas chromatography mass spectrometry analysis. 3-Phenoxybenzaldehyde was a major product of CYP6AA3-mediated deltamethrin metabolism. Deltamethrin degradation and formation of metabolites were NADPH-dependent and inhibited by piperonyl butoxide. Deltamethrin was catalyzed by CYP6AA3 with an apparent K(m) of 80.0 +/- 2.0 and V(max) of 60.2 +/- 3.6 pmol/min/pmol P450. Furthermore, deltamethrin cytotoxicity assays by 3-(4,5-dimethylthiazol-2-yl)-2,5-diphenyltetrazolium bromide (MTT) and trypan blue dye exclusion were examined in Sf9 insect cells, with and without expression of CYP6AA3. Results revealed that CYP6AA3 could play a role in detoxifying deltamethrin in the cells. Thus, the results of this study support the role of CYP6AA3 in deltamethrin metabolism.
机译:细胞色素P450单加氧酶的代谢是与昆虫对包括拟除虫菊酯在内的杀虫剂产生抗性有关的主要机制。我们之前曾从溴氰菊酯选择的抗微小按蚊(Anopheles minimus mosquito)(泰国的主要疟疾媒介)中分离出细胞色素P450 CYP6AA3。在本研究中,我们进一步研究了CYP6AA3酶在溴氰菊酯体外代谢中的作用。 CYP6AA3通过杆状病毒介导的表达系统在Spodoptera frugiperda(Sf9)昆虫细胞中表达。 CYP6AA3在溴氰菊酯代谢中的酶活性用An重构。 minimus NADPH-细胞色素P450还原酶和NADPH再生系统。通过测定潜伏期后溴氰菊酯的消失来确定负责溴氰菊酯代谢的CYP6AA3的贡献,并使用联合气相色谱质谱分析法检测溴氰菊酯衍生的化合物。 3-苯氧基苯甲醛是CYP6AA3介导的溴氰菊酯代谢的主要产物。溴氰菊酯的降解和代谢产物的形成均取决于NADPH,并受到胡椒基丁醚的抑制。 CYP6AA3催化溴氰菊酯的表观K(m)为80.0 +/- 2.0,V(max)为60.2 +/- 3.6 pmol / min / pmol P450。此外,在Sf9昆虫细胞中检测了3-(4,5-二甲基噻唑-2-基)-2,5-二苯基四唑溴化物(MTT)和台盼蓝染料排斥反应对溴氰菊酯的细胞毒性,无论是否表达CYP6AA3。结果显示CYP6AA3可能在细胞中溴氰菊酯的解毒中起作用。因此,本研究的结果支持CYP6AA3在溴氰菊酯代谢中的作用。

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