Resilience of transfluthrin to oxidative attack by duplicated CYP6P9 variants known to confer pyrethroid resistance in the major malaria mosquito Anopheles funestus

被引:3
|
作者
Nolden, Melanie [1 ,2 ]
Velten, Robert [1 ]
Paine, Mark J. I. [2 ]
Nauen, Ralf [1 ]
机构
[1] Bayer AG, Crop Sci Div, Alfred Nobel Str 50, D-40789 Monheim Am Rhein, Germany
[2] Univ Liverpool Liverpool Sch Trop Med, Dept Vector Biol, Pembroke Pl, Liverpool L3 5QA, England
关键词
Cytochrome P450; Transfluthrin; Pyrethroids; Anopheles; INSECTICIDE RESISTANCE; METABOLISM; RAT;
D O I
10.1016/j.pestbp.2023.105356
中图分类号
Q5 [生物化学]; Q7 [分子生物学];
学科分类号
071010 ; 081704 ;
摘要
Resistance to common pyrethroids, such as deltamethrin and permethrin is widespread in the malaria mosquito Anopheles funestus and mainly conferred by upregulated cytochrome P450 monooxygenases (P450s). In the pyrethroid resistant laboratory strain An. funestus FUMOZ-R the duplicated genes CYP6P9a and CYP6P9b are highly upregulated and have been shown to metabolize various pyrethroids, including deltamethrin and permethrin. Here, we recombinantly expressed CYP6P9a and CYP6P9b from An. funestus using a baculovirus expression system and evaluated the interaction of the multifluorinated benzyl pyrethroid transfluthrin with these enzymes by different approaches. First, by Michaelis-Menten kinetics in a fluorescent probe assay with the model substrate 7-benzyloxymethoxy-4-trifluoromethylcoumarin (BOMFC), we showed the inhibition of BOMFC metabolism by increasing concentrations of transfluthrin. Second, we tested the metabolic capacity of recom-binantly expressed CYP6P9 variants to degrade transfluthrin utilizing UPLC-MS/MS analysis and detected low depletion rates, explaining the virtual lack of resistance of strain FUMOZ-R to transfluthrin observed in previous studies. However, as both approaches suggested an interaction of CYP6P9 variants with transfluthrin, we analyzed the oxidative metabolic fate and failed to detect hydroxylated transfluthrin, but low amounts of an M-2 transfluthrin metabolite. Based on the detected metabolite we hypothesize oxidative attack of the gem-dimethyl substituted cyclopropyl moiety, resulting in the formation of an allyl cation upon ring opening. In conclusion, these findings support the resilience of transfluthrin to P450-mediated pyrethroid resistance, and thus, reinforces its employment as an important resistance-breaking pyrethroid in resistance management strategies to control the major malaria vector An. funestus.
引用
下载
收藏
页数:7
相关论文
共 24 条
  • [1] Sequential phase I metabolism of pyrethroids by duplicated CYP6P9 variants results in the loss of the terminal benzene moiety and determines resistance in the malaria mosquito Anopheles funestus
    Nolden, Melanie
    Paine, Mark J. I.
    Nauen, Ralf
    INSECT BIOCHEMISTRY AND MOLECULAR BIOLOGY, 2022, 148
  • [2] Two duplicated P450 genes are associated with pyrethroid resistance in Anopheles funestus, a major malaria vector
    Wondji, Charles S.
    Irving, Helen
    Morgan, John
    Lobo, Neil F.
    Collins, Frank H.
    Hunt, Richard H.
    Coetzee, Maureen
    Hemingway, Janet
    Ranson, Hilary
    GENOME RESEARCH, 2009, 19 (03) : 452 - 459
  • [3] Over expression of a cytochrome p450 (CYP6P9) in a major African malaria vector, Anopheles funestus, resistant to pyrethroids
    Amenya, D. A.
    Naguran, R.
    Lo, T. -C. M.
    Ranson, H.
    Spillings, B. L.
    Wood, O. R.
    Brooke, B. D.
    Coetzee, M.
    Koekemoer, L. L.
    INSECT MOLECULAR BIOLOGY, 2008, 17 (01) : 19 - 25
  • [4] Sequence characterization of cytochrome P450 CYP6P9 in pyrethroid resistant and susceptible Anopheles funestus (Diptera: Culicidae)
    Matambo, T. S.
    Paine, M. J. I.
    Coetzee, M.
    Koekemoer, L. L.
    GENETICS AND MOLECULAR RESEARCH, 2010, 9 (01): : 554 - 564
  • [5] Biochemical profiling of functionally expressed CYP6P9 variants of the malaria vector Anopheles funestus with special reference to cytochrome b5 and its role in pyrethroid and coumarin substrate metabolism
    Nolden, Melanie
    Paine, Mark J., I
    Nauen, Ralf
    PESTICIDE BIOCHEMISTRY AND PHYSIOLOGY, 2022, 182
  • [6] The duplicated P450s CYP6P9a/b drive carbamates and pyrethroids cross-resistance in the major African malaria vector Anopheles funestus
    Mugenzi, Leon M. J.
    Tekoh, Theofelix A.
    Ibrahim, Sulaiman S.
    Muhammad, Abdullahi
    Kouamo, Mersimine
    Wondji, Murielle J.
    Irving, Helen
    Hearn, Jack
    Wondji, Charles S.
    PLOS GENETICS, 2023, 19 (03):
  • [7] The cytochrome P450 CYP325A is a major driver of pyrethroid resistance in the major malaria vector Anopheles funestus in Central Africa
    Wamba, Amelie N. R.
    Ibrahim, Sulaiman S.
    Kusimo, Michael O.
    Muhammad, Abdullahi
    Mugenzi, Leon M. J.
    Irving, Helen
    Wondji, Murielle J.
    Hearn, Jack
    Bigoga, Jude D.
    Wondji, Charles S.
    INSECT BIOCHEMISTRY AND MOLECULAR BIOLOGY, 2021, 138
  • [8] IMPACT OF THE DUPLICATED P450 GENE, CYP6P9A AND CYP6P9B ON THE EFFECTIVENESS OF VARIOUS BED NETS AGAINST <it>ANOPHELES FUNESTUS</it>, A MAJOR MALARIA VECTOR IN AFRICA
    Menze, Benjamin
    Wondji, Murielle
    Tchoupo, Micareme
    Wondji, Charles
    AMERICAN JOURNAL OF TROPICAL MEDICINE AND HYGIENE, 2018, 99 (04): : 453 - 453
  • [9] Pyrethroid Resistance in the Major Malaria Vector Anopheles funestus is Exacerbated by Overexpression and Overactivity of the P450 CYP6AA1 Across Africa
    Ibrahim, Sulaiman S.
    Amvongo-Adjia, Nathalie
    Wondji, Murielle J.
    Irving, Helen
    Riveron, Jacob M.
    Wondji, Charles S.
    GENES, 2018, 9 (03)
  • [10] Two highly selected mutations in the tandemly duplicated CYP6P4a and CYP6P4b genes drive pyrethroid resistance in Anopheles funestus in West Africa
    Nelly M. T. Tatchou-Nebangwa
    Leon M. J. Mugenzi
    Abdullahi Muhammad
    Derrick N. Nebangwa
    Mersimine F. M. Kouamo
    Carlos S. Djoko Tagne
    Theofelix A. Tekoh
    Magellan Tchouakui
    Stephen M. Ghogomu
    Sulaiman S. Ibrahim
    Charles S. Wondji
    BMC Biology, 22 (1)