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Acetylcholinesterase of the sand fly, Phlebotomus papatasi (Scopoli): cDNA sequence, baculovirus expression, and biochemical properties

机译:苍蝇,埃及乳杆菌(Scopoli)的乙酰胆碱酯酶:cDNA序列,杆状病毒表达和生化特性

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Background Millions of people and domestic animals around the world are affected by leishmaniasis, a disease caused by various species of flagellated protozoans in the genus Leishmania that are transmitted by several sand fly species. Insecticides are widely used for sand fly population control to try to reduce or interrupt Leishmania transmission. Zoonotic cutaneous leishmaniasis caused by L. major is vectored mainly by Phlebotomus papatasi (Scopoli) in Asia and Africa. Organophosphates comprise a class of insecticides used for sand fly control, which act through the inhibition of acetylcholinesterase (AChE) in the central nervous system. Point mutations producing an altered, insensitive AChE are a major mechanism of organophosphate resistance in insects and preliminary evidence for organophosphate-insensitive AChE has been reported in sand flies. This report describes the identification of complementary DNA for an AChE in P. papatasi and the biochemical characterization of recombinant P. papatasi AChE. Methods A P. papatasi Israeli strain laboratory colony was utilized to prepare total RNA utilized as template for RT-PCR amplification and sequencing of cDNA encoding acetylcholinesterase 1 using gene specific primers and 3’-5’-RACE. The cDNA was cloned into pBlueBac4.5/V5-His TOPO, and expressed by baculovirus in Sf21 insect cells in serum-free medium. Recombinant P. papatasi acetylcholinesterase was biochemically characterized using a modified Ellman’s assay in microplates. Results A 2309 nucleotide sequence of PpAChE1 cDNA [GenBank: JQ922267] of P. papatasi from a laboratory colony susceptible to insecticides is reported with 73-83% nucleotide identity to acetylcholinesterase mRNA sequences of Culex tritaeniorhynchus and Lutzomyia longipalpis, respectively. The P. papatasi cDNA ORF encoded a 710-amino acid protein [GenBank: AFP20868] exhibiting 85% amino acid identity with acetylcholinesterases of Cx. pipiens, Aedes aegypti, and 92% amino acid identity for L. longipalpis. Recombinant P. papatasi AChE1 was expressed in the baculovirus system and characterized as an insect acetylcholinesterase with substrate preference for acetylthiocholine and inhibition at high substrate concentration. Enzyme activity was strongly inhibited by eserine, BW284c51, malaoxon, and paraoxon, and was insensitive to the butyrylcholinesterase inhibitors ethopropazine and iso-OMPA. Conclusions Results presented here enable the screening and identification of PpAChE mutations resulting in the genotype for insensitive PpAChE. Use of the recombinant P. papatasi AChE1 will facilitate rapid in vitro screening to identify novel PpAChE inhibitors, and comparative studies on biochemical kinetics of inhibition.
机译:背景技术全世界的数以百万计的人和家畜都受到利什曼病的影响,利什曼病是一种由利什曼原虫属中各种鞭毛原生动物引起的疾病,这种疾病通过几种沙蝇传播。杀虫剂广泛用于沙蝇种群控制,以试图减少或中断利什曼原虫的传播。由大麦芽孢杆菌引起的人畜共患性皮肤利什曼病主要由亚洲和非洲的番木瓜(Slepoli)传播。有机磷酸酯包括一类用于控制沙蝇的杀虫剂,其通过抑制中枢神经系统中的乙酰胆碱酯酶(AChE)发挥作用。点突变产生不敏感的AChE改变是昆虫对有机磷酸酯抗性的主要机制,并且在沙蝇中已有有机磷不敏感的AChE的初步证据。这份报告描述了P. papatasi中AChE的互补DNA的鉴定以及重组P. papatasi AChE的生化特性。方法利用以色列巴氏酵母菌株实验室菌落制备总RNA,以其为模板,使用基因特异性引物和3'-5'-RACE对编码乙酰胆碱酯酶1的cDNA进行RT-PCR扩增和测序。将该cDNA克隆到pBlueBac4.5 / V5-His TOPO中,并通过杆状病毒在无血清培养基中的Sf21昆虫细胞中表达。重组P. papatasi乙酰胆碱酯酶在微孔板中使用改良的Ellman法进行了生化鉴定。结果据报道,来自易感杀虫剂的实验室菌落中的P. papatasi PpAChE1 cDNA [GenBank:JQ922267]的2309个核苷酸序列与三倍体库蚊和长拟卢丝藻的乙酰胆碱酯酶mRNA序列具有73-83%的核苷酸同一性。乳杆菌(P. papatasi)cDNA ORF编码一个710个氨基酸的蛋白质[GenBank:AFP20868],与Cx的乙酰胆碱酯酶具有85%的氨基酸同一性。 pipiens,埃及伊蚊和长鞭乳杆菌的92%氨基酸同一性。重组P. papatasi AChE1在杆状病毒系统中表达,并被表征为昆虫乙酰胆碱酯酶,其底物优先于乙酰硫胆碱,并在高底物浓度下具有抑制作用。酶活性被色氨酸,BW284c51,马拉松和对氧磷强烈抑制,对丁酰胆碱酯酶抑制剂乙丙嗪和异OMPA不敏感。结论此处给出的结果能够筛选和鉴定导致不敏感PpAChE基因型的PpAChE突变。重组P. papatasi AChE1的使用将有助于快速的体外筛选,以鉴定新型的PpAChE抑制剂,以及抑制作用的生化动力学的比较研究。

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