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杀虫剂分子靶标烟碱型乙酰胆碱受体研究进展

封云涛 徐宝云 吴青君 王少丽 常晓莉 张友军

封云涛, 徐宝云, 吴青君, 王少丽, 常晓莉, 张友军. 杀虫剂分子靶标烟碱型乙酰胆碱受体研究进展[J]. 农药学学报, 2009, 11(2): 149-158.
引用本文: 封云涛, 徐宝云, 吴青君, 王少丽, 常晓莉, 张友军. 杀虫剂分子靶标烟碱型乙酰胆碱受体研究进展[J]. 农药学学报, 2009, 11(2): 149-158.
FENG Yun-tao, XU Bao-yun, WU Qing-jun, WANG Shao-li, CHANG Xiao-li, ZHANG You-jun. Advances in the Molecular Target for Insecticides ofNicotinic Acetylcholine Receptors[J]. Chinese Journal of Pesticide Science, 2009, 11(2): 149-158.
Citation: FENG Yun-tao, XU Bao-yun, WU Qing-jun, WANG Shao-li, CHANG Xiao-li, ZHANG You-jun. Advances in the Molecular Target for Insecticides ofNicotinic Acetylcholine Receptors[J]. Chinese Journal of Pesticide Science, 2009, 11(2): 149-158.

杀虫剂分子靶标烟碱型乙酰胆碱受体研究进展

基金项目: 

国家重点基础研究发展规划("973"计划)项目(2009CB119200);National Basic Research and Development Program (Invasion Mechanisms and Management of Major Alien Species)(2009-2014).

Advances in the Molecular Target for Insecticides ofNicotinic Acetylcholine Receptors

  • 摘要: 昆虫烟碱型乙酰胆碱受体(nicotinic acetylcholine receptors,nAChRs)广泛分布于昆虫中枢神经系统,是杀虫剂作用的主要靶标。目前昆虫中该受体的天然亚基组成尚不完全明确。果蝇的任意α亚基与脊椎动物的一个β亚基共表达是目前最好的异源表达模型,但仍然急需新的研究工具,研究表明一些与受体相关的蛋白质影响着表达。胞内磷酸化的调节作用为今后受体药理学特性的研究提供了新方向。受体亚基上一些关键氨基酸在新烟碱杀虫剂对受体的选择作用中起重要作用。在对吡虫啉抗性的褐飞虱种群中找到了与抗性相关的突变位点,这为新烟碱类杀虫剂靶标不敏感性研究提供了直接证据。对昆虫烟碱型乙酰胆碱受体的分子多样性、功能表达、胞内调节机制、受体与杀虫剂的选择作用及其抗性分子机理等的研究进展进行了综述。
  • TOMIZAWA M,CASIDA J E.Selective Toxicity of Neonicotinoids Attributable to Specificity of Insect and Mammalian Nicotinic Receptors [J].Annu Rev Entomol,2003,48:339-364.
    TOMIZAWA M,CASIDA J E.Neonicotinoid Insecticide Toxicology:Mechanisms of Selective Action [J].Annu Rev Pharmacol Toxicol,2005,45:247-268.
    TANG Zhen-hua(唐振华),BI Qiang(毕强).Molecular Behavior of Insecticide Action(杀虫剂作用的分子行为)[M].Shanghai(上海):Shanghai Far East Publishers(上海远东出版社),2003:373- 420.
    MATSUDA K,SHIMOMURA M,IHARA M,et al.Neonicotinoids Show Selective and Diverse Actions on their Nicotinic Receptor Targets:Electrophysiology,Molecular Biology,and Receptor Modeling Studies [J].Biosci Biotechnol Biochem,2005,69:1441-1452.
    MILLAR N S,DENHOLM I.Nicotinic Acetylcholine Receptors:Targets for Commercially Important Insecticides [J].Invert Neurosci,2007,7:53-66.
    JONES A K,ELGAR G,SATTELLE D B.The Nicotinic Acetylcholine Receptor Gene Family of the Pufferfish,Fugu rubripes [J].Genomics,2003,82:441-451.
    JONES A K,SATTELLE D B.Functional Genomics of the Nicotinic Acetylcholine Receptor Gene Family of the Nematode,Caenorhabditis elegans [J].BioEssays,2004,26:39-49.
    HERMANS-BORGMEYER I,ZOPF D,RYSECK R P,et al.Primary Structure of a Developmentally Regulated Nicotinic Acetylcholine Receptor Protein from Drosophila [J].EMBO J,1986,5:1503-1508.
    BOSSY B,BALLIVET M,SPIERER P.Conservation of Neural Nicotinic Acetylcholine Receptors from Drosophila to Vertebrate Central Nervous Systems [J].EMBO J,1988,7:611-618.
    BAUMANN A,JONAS P,GUNDELFINGER E D.Sequence of Da2,a Novel α-like Subunit of Drosophila Nicotinic Acetylcholine Receptors [J].Nucleic Acids Res,1990,18:3640.
    SAWRUK E,SCHLOSS P,BETZ H,et al.Heterogeneity of:Drosophila Nicotinic Acetylcholine Receptor SAD,a Novel Developmentally Regulated a-subunit [J].EMBO J,1990,9:2671-2677.
    SAWRUK E,UDRI C,BETZ H,et al.SBD,a Novel Structural Subunit of the Drosophila Nicotinic Acetylcholine Receptor,Shares its Genomic Localization with two a-subunits [J].FEBS Lett,1990,273:177-181.
    SCHULZ R,SAWRUK E,MULHARDT C,et al.Da3,a New Functional a Subunit of Nicotinic Acetylcholine Receptors from Drosophila [J].J Neurochem,1998,71:853-862.
    LANSDELL S J,MILLAR N S.Cloning and Heterologous Expression of Da4,a Drosophila Neuronal Nicotinic Acetylcholine Receptor Subunit:Identification of an Alternative Exon Influencing the Efficiency of Subunit Assembly [J].Neuropharmacology,2000,39:2604-2614.
    LANSDELL S J,MILLAR N S.Dβ3,an Atypical Nicotinic Acetylcholine Receptor Subunit from Drosophila:Molecular Cloning,Heterologous Expression and Coassembly [J].J Neurochem,2002,80:1009-1018.
    LANSDELL S J,MILLAR N S.Molecular Characterisation of Da6 and Da7 Nicotinic Acetylcholine Receptor Subunits from Drosophila:Formation of a High-affinity α-Bungarotoxin Binding site Revealed by Expression of Subunit Chimeras [J].Neuroche,2004,90:479-489.
    GRAUSO M,REENAN R A,CULETTO E,et al.Novel Putative Nicotinic Acetylcholine Receptor Subunit Genes,Dα5,Dα6 and Dα7,in Drosophila melanogaster Identify a New and Highly Conserved Target of Adenosine Deaminase Acting on RNA-mediated A-to-I Pre-mRNA Editing [J].Genetics,2002,160:1519-1533.
    JONES A K,GRAUSO M,SATTELLE D B.The Nicotinic Acetylcholine Receptor Gene Family of the Malaria Mosquito,Anopheles gambiae [J].Genomics,2005,85:176-187.
    THANY S H,LENAERS G,CROZATIER M,et al.Identification and Localization of the Nicotinic Acetylcholine Receptor α3 mRNA in the Brain of the Honeybee,Apis mellifera [J].Insect Mol Biol,2003,12:255-262.
    THANY S H,CROZATIER M,RAYMOND-DELPECH V,et al.Apisα2,Apisα7-1 and Apisα7-2:Three New Neuronal Nicotinic Acetylcholine Receptor α-subunit in the Honeybee Brain [J].Gene,2005,344:125-132.
    JONES A K,RAYMOND-DELPECH V,THANY S H,et al.The Nicotinic Acetylcholine Receptor Gene Family of the Honey Bee,Apis mellifera [J].Genome Res,2006,16:1422-1430.
    SGARD F,FRASER S P,KATKOWSKA M J,et al.Cloning and Functional Characterization of Two Novel Nicotinic Acetylcholine Receptor α Subunit from the Insect Pest Myzus persicae [J].J Neurochem,1998,71:903-912.
    HUANG Y,WILLIAMSON M S,DEVONSHIRE A L,et al.Molecular Characterization and Imidacloprid Selectivity of Nicotinic Acetylcholine Receptor Subunits from the Peach-potato Aphid Myzus persicae [J].J Neurochem,1999,73:380-389.
    HUANG Y,WILLIAMSON M S,DEVONSHIRE A L,et al.Cloning,Heterologous Expression and Co-assembly of MPβ1,a Nicotinic Acetylcholine Receptor Subunit from the Aphid Myzus persicae[J].Neurosci Lett,2000,284:116-120.
    LIU Z W,WILLIAMSON M S,LANSDELL S J,et al.A Nicotinic Acetylcholine Receptor Mutation Conferring Target-site Resistance to the Imidacloprid in Nilaparvata lugens(Brown Planthopper) [J].Proc Natl Acad Sci USA,2005,102:8420-8425.
    HERMSEN B,STETZER E,THEES R,et al.Neuronal Nicotinic Receptors in the Locust Locusta migratoria:Cloning and Expression [J].J Biochem,1998,273:18394-18404.
    MARSHALL J,BUCKINGHAMS D,SHINGAI R,et al.Sequence and Functional Expression of a Single a-Subunit of an Insect Nicotinic Acetylcholine-receptor [J].EMBO J,1990,9:4391-4398.
    JONES A K,MARSHALL J,BLAKE A D,et al.Sgβ1,a Novel Locust (Schistocerca gregaria) non-α Nicotinic Acetylcholine Receptor-like Subunit with Homology to the Drosophlia melanogaster Dβ1 Subunit [J].Invert Neurosci,2005,5:147-155.
    EASTHAM H M,LIND R J,EASTLAKE J L,et al.Characterization of a Nicotinic Acetylcholine Receptor from the Insect Manduca sexta [J].Eur J Neurosc,1998,10:879-889.
    BASS C,LANSDELL S J,MILLAR N S,et al.Molecular Characterization of Nicotinic Acetylcholine Receptor Subunits from the Cat Flea,Ctenocephalides felis(Siphonaptera:Pulicidae) [J].Insect Biochem Mol Biol,2006,36:86-96.
    HAN Zhao-jiu(韩招久),HAN Zhao-jun(韩召军).二化螟乙酰胆碱受体α亚基的基因克隆与序列分析[J].Zoological Research(动物学研究),2002,23(1):7-13.
    LI Fei(李 飞),HAN Zhao-jun(韩召军).棉蚜乙酰胆碱受体亚基的选择性剪接和多重转录起始位点分析[J].Acta Zoologica Sinica(动物学报),2005,51(5):867-878.
    QIU Gao-hui(邱高辉),HAN Zhao-jun(韩召军).麦长管蚜烟碱型乙酰胆碱受体基因的克隆和序列分析[J].Acta Entomol Sin(昆虫学报),2007,50(8):762-768.
    SATTELLE D B,JONES A K,SATTELLE B M,et al.Edit,Cut and Paste in the Nicotinic Acetylcholine Receptor Gene Family of Drosophila melanogaster[J].Bio Essays,2005,27:366-376.
    STETEFELD J,RUEGG M A.Structural and Functional Diversity Generated by Alternative mRNA Splicing [J].Trends Biochem Sci,2005,30:515-521.
    SEEBURG P H.A-to-I Editing:New and Old Sites,Functions and Speculations [J].Neuron,2002,35:17-20.
    JONES A K,BROWN L A.Insect Nicotinic Acetylcholine Receptor Gene Families:from Genetic Model Organism to Vector,Pest and Beneficial Species [J].Invert Neurosci,2007,7:67-73.
    JONES A K,SATTELLE D B.The Cys-loop Ligand-gated Ion Channel Super-family of the Honeybee,Apis mellifera [J].Invert Neurosci,2006,6:123-132.
    MILLAR N S.Assembly and Subunit Diversity of Nicotinic Acetylcholine Receptors [J].Biochem Soc Trans,2003,31:869-874.
    SCHULZ R,BERTRAND S,CHAMAON K,et al.Neuronal Nicotinic Acetylcholine Receptors from Drosophila:Two Different Types of a Subunit Co-assemble within the Same Receptor Complex [J].J Neurochem,2000,74:2537-2546.
    VALOR L M,CASTILLO M,ORTIZ J A,et al.Transcriptional Regulation by Activation and Repression Elements Located at 5'-noncoding Region of the Human α9 Nicotinic Receptor Subunit Gene [J].J Biol Chem,2003,278:37249-37255.
    HALEVI S,MCKAY J,PALFREYMAN M,et al.The C.elegans Ric-3 Gene is Required for Maturation of Nicotinic Acetylcholine Receptors [J].EMBO J,2002,21:1012-1020.
    HALEVI S,YASSIN L,ESHEL M,et al.Conservation within the RIC-3 Gene Family.Effectors of Mammalian Nicotinic Acetylcholine Receptor Expression [J].J Biol Chem,2003,278:34411-34417.
    JEANCLOS E M,LIN L,TREUIL M W,et al.The Chapterone Protein 14-3-3eta Interacts with the Nicotinic Acetylcholine Receptor α4 Subunit.Evidence for a Dynamic Role in Subunit Stabilization [J].J Biol Chem,2001,276:28281-28290.
    MARCHAND S,DEVILLERS-THIERY A,PONS S,et al.Rapsyn Escorts the Nicotinic Acetylcholine Receptor along the Exocytic Pathway via Association with Lipid Rafts [J].J Neurosci,2002,22:8891-8901.
    THANY S H,LENAERS G,RAYMOND-DELPECH V,et al.Exploring the Pharmacological Properties of Insect Nicotinic Acetylcholine Receptors [J].Trends Pharmacol Sci,2007,28:14-22.
    WILLIAMS M E,BURTON B,URRUTIA A,et al.Ric-3 Promotes Functional Expression of the Nicotinic Acetylcholine Receptor α7 Subunit in Mammalian Cells [J].J Biol Chem,2005,280:1257-1263.
    LANSDELL S J,GEE V J,HARKNESS P C,et al.RIC-3 Enhances Functional Expression of Multiple Nicotinic Acetylcholine Receptor Subtypes in Mammalian Cells [J].Mol Pharmacol,2005,68:1431-1438.
    CASTELAN F,CASTILLO M,MULET J,et al.Molecular Characterization and Localization of the RIC-3 Protein,an Effector of Nicotinic Acetylcholine Receptor Expression [J].J Neurochem,2008,105:617-27.
    GEE V J,KRACUN S,COOPER S T,et al.Identification of Domains Influencing Assembly and Ion Channel Properties in α7 Nicotinic Receptor and 5-HT3 Receptor Subunit Chimaeras [J].Br J Pharmacol,2007,152:501-512.
    CHARPANTIER E,WIESNER A,HUH K H.Alpha7 Neuronal Nicotinic Acetylcholine Receptors are Negatively Regulated by Tyrosine Phosphorylation and Src-family Kinases [J].J Neurosci,2005,25:9836-9849.
    MARSZALEC W,YEH J Z,NARAHASHI T.Desensitization of Nicotine Acetylcholine Receptors:Modulation by Kinase Activation and Phosphatase Inhibition [J].Eur J Pharmacol,2005,514:83-90.
    BUTT S J,PITMAN R M.Indirect Phosphorylation-dependent Modulation of Postsynaptic Nicotinic Acetylcholine Responses by 5-hydroxytrptamine [J].Eur J Neurosci,2005,21:1181-1188.
    SALGADO V L,SAAR R.Desensitizing and Non-desensitizing Subtypes of α-Bungarotoxin-sensitive Nicotinic Acetylcholine Receptors in Cockroach Neurons [J].J Insect Physiol,2004,50:867-879.
    COURJARET R,LAPIED B.Complex Intracellular Messenger Pathways Regulate one Type of Neuronal α-Bungarotoxin-resistant Nicotinic Acetylcholine Receptors Expressed in Insect Neurosecretory Cells (Dorsal Unpaired Median Neurons) [J].Mol Pharmacol,2001,60:80-91.
    ZAYAS R M.Nicotinic-acetylcholine Receptors are Functionally Coupled to the Nitric Oxide/cGMP-pathway in Insect Neurons [J].J Neurochem,2002,83:421-431.
    TOMIZAWA M,LEE D L,CASIDA J E.Neonicotinoid Insecticides:Molecular Features Conferring Selectivity for Insect Versus Mammalian Nicotinic Receptors [J].J Agric Food Chem,2000,48:6016-6024.
    TOMIZAWA M,ZHANG N,DURKIN K A,et al.The Neonicotinoid Electronegative Pharmacophore Plays the Crucial Role in the High Affinity and Selectivity for the Drosophila Nicotinic Receptor:an Anomaly for the Nicotinoid Cation-π Interaction Model [J].Biochem,2003,42:7819-7827.
    MATSUDA K,BUCKINGHAMS D,FREEMAN J C,et al.Effects of the a Subunit on Imidacloprid Sensitivity of Recombinant Nicotinic Acetylcholine Receptors [J].Br J Pharmacol,1998,123:518-524.
    LANSDELL S J,MILLAR N S.The Influence of Nicotinic Receptor Subunit Composition upon Agonist,α-Bungarotoxin and Insecticide (Imidacloprid) Binding Affinity [J].Neuropharmacology,2000,39:671-679.
    IHARA M,MATSUDA K,OTAKE M,et al.Diverse Action of Neonicotinoids on Chicken α7,α4β2 and Drosophila-chicken SADβ2 and ALSβ2 Hybrid Nicotinic Acetylcholine Receptors Expressed in Xenopus laevis oocytes [J].Neuropharmacology,2003,45:133-144.
    IHARA M,MATSUDA K,SHIMOMURA M,et al.Super Agonist Actions of Clothianidin and Related Compounds on the SADβ2 Nicotinic Acetylcholine Receptor Expressed in Xenopus laevis oocytes [J].Biosci Biotechnol Biochem,2004,68:761-763.
    MATSUDA K,SHIMOMURA M,KONDO Y,et al.Role of LoopD of the α7 Nicotinic Acetylcholine Receptor in its Interaction with the Insecticide Imidacloprid and Related Neonicotinoids [J].Br J Pharmacol,2000,130:981-986.
    SHIMOMURA M,YOKOTA M,MATSUDA K,et al.Roles of LoopC and the LoopB-C Interval of the Nicotinic Receptor a Subunit in its Selective Interactions with Imidacloprid in Insects [J].Neurosci Lett,2004,363:195-198.
    SHIMOMURA M,SATOH H,YOKOTA M,et al.Insect-vertebrate Chimeric Nicotinic Acetylcholine Receptors Identify a Region,LoopB to the N-Terminus of the Drosophila Dα2 Subunit,Which Contributes to Neonicotinoid Sensitivity [J].Neurosci Lett,2005,385:168-172.
    LIU Z W,HAN Z J,WANG Y C,et al.Selection for Imidacloprid Resistance in Nilaparvata lugens:Cross-resistance Patterns and Possible Mechanisms [J].Pest Manage Sci,2003,59:1355-1359.
    SCHIMOMURA M,YOKOTA M,IHARA M,et al.Role in the Selectivity of Neonicotinoids of Insect-specific Basic Residues in LoopD of the Nicotinic Acetylcholine Receptor Agonist Binding Site [J].Mol Pharmacol,2006,70:1255-1263.
    YAO X M,SONG F,CHEN F J,et al.Amino Acids within Loops D,E and F of Insect Nicotinic Acetylcholine Receptor β Subunits Influence Neonicotinoid Selectivity [J].Insect Biochem Mol Biol,2008,38:834-840.
    LIU Z,HAN Z,LIU S,et al.Amino Acids outside of the Loops that Define the Agonist Binding Site are Important for Ligand Binding to Insect Nicotinic Acetylcholine Receptors [J].J Neurochem,2008,106:224-30.
    LIU Z W,WILLIAMSON M S,LANSDELL S J,et al.A Nicotinic Acetylcholine Receptor Mutation (Y151S) Causes Reduced Agonist Potency to a Range of Neonicotinoid Insecticides [J].J Neurochem,2006,99:1273-1281.
    LIU Z W,HAN Z J.Fitness Costs of Laboratory-selected Imidacloprid Resistance in the Brown Planthopper,Nilaparvata lugens Stl.[J].Pest Manage Sci,2006,62:279-282.
    PERRY T,HECKEL D G,MCKENZIE J A,et al.Mutations in Dα1 or Dβ2 Nicotinic Acetylcholine Receptor Subunits Can Confer Resistance to Neonicotinoids in Drosophila melanogaster [J].Insect Biochem Mol Biol,2008,38:520-528.
    ZHANG Y,LIU S,GU J,et al.Imidacloprid Acts as an Antagonist Insect Nicotinoid Acetylcholine Receptor Containing the Y151M Mutation [J].Neurosci Lett,2008,446:97-100.
    SALGADO V L.The Modes of Action of Spinosad and other Insect Control Products [J].Down Earth,1997,52:35-43.
    WATSON G B.Actions of Insecticidal Spinosyns on γ-Aminobutyric Acid Responses from Small-diameter Cockroach Neurons [J].Pestic Biochem Physiol,2001,71:20-28.
    PERRY T,MCKENZIE J A,BATTERHAM P.A Dα6 Knockout Strain of Drosophila melanogaster Confers a High Level of Resistance to Spinosad [J].Insect Biochem Mol Biol,2007,37:184-188.
    GAO J R,DEACUTIS J M,SCOTT J G.The Nicotinic Acetylcholine Receptor Subunits Mdα5 and Mdβ3 on Autosome 1 of Musca domestica are not Involved in Spinosad Resistance [J].Insect Mol Biol,2007,16:691-701. (Ed.JIN S H)
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