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Novel and Viable Acetylcholinesterase Target Site for Developing Effective and Environmentally Safe Insecticides

机译:新型和可行的乙酰胆碱酯酶靶标位点用于开发有效和对环境安全的杀虫剂

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摘要

Insect pests are responsible for human suffering and financial losses worldwide. New and environmentally safe insecticides are urgently needed to cope with these serious problems. Resistance to current insecticides has resulted in a resurgence of insect pests, and growing concerns about insecticide toxicity to humans discourage the use of insecticides for pest control. The small market for insecticides has hampered insecticide development; however, advances in genomics and structural genomics offer new opportunities to develop insecticides that are less dependent on the insecticide market. This review summarizes the literature data that support the hypothesis that an insect-specific cysteine residue located at the opening of the acetylcholinesterase active site is a promising target site for developing new insecticides with reduced off-target toxicity and low propensity for insect resistance. These data are used to discuss the differences between targeting the insect-specific cysteine residue and targeting the ubiquitous catalytic serine residue of acetylcholinesterase from the perspective of reducing off-target toxicity and insect resistance. Also discussed is the prospect of developing cysteine-targeting anticholinesterases as effective and environmentally safe insecticides for control of disease vectors, crop damage, and residential insect pests within the financial confines of the present insecticide market.
机译:虫害是造成全球人类痛苦和经济损失的原因。迫切需要新的对环境安全的杀虫剂来应对这些严重的问题。对当前杀虫剂的抗性导致了害虫的复发,并且人们日益关注杀虫剂对人类的毒性,因此不鼓励使用杀虫剂进行害虫防治。杀虫剂的小市场阻碍了杀虫剂的发展。然而,基因组学和结构基因组学的进步为开发不那么依赖杀虫剂市场的杀虫剂提供了新的机会。这篇综述总结了支持以下假设的文献数据:位于乙酰胆碱酯酶活性位点开口处的昆虫特异性半胱氨酸残基是开发具有降低脱靶毒性和低抗药性的新型杀虫剂的有希望的靶点。从减少脱靶毒性和昆虫抗性的角度出发,这些数据用于讨论靶向昆虫特异性半胱氨酸残基和靶向乙酰胆碱酯酶普遍存在的催化丝氨酸残基之间的差异。还讨论了在当前杀虫剂市场的经济范围内开发靶向半胱氨酸的抗胆碱酯酶作为控制病媒,农作物损害和居住害虫的有效且对环境安全的杀虫剂的前景。

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