Heterologous expression, biochemical characterization and prospects for insecticide biosensing potential of carboxylesterase Ha006a from Helicoverpa armigera

棉铃虫 有机磷 对氧磷 毒死蜱 溴氰菊酯 毒理 铃夜蛾属 背景(考古学) 杀虫剂 生物技术 生物 生物化学 乙酰胆碱酯酶 植物 幼虫 农学 古生物学
作者
Harry Kaur,Surabhi Rode,Sapna Lonare,Pratibha Demiwal,Pavithra Narasimhappa,Arun Elaiyaraja,Rakesh Kumar,Joy Das,Praveen C. Ramamurthy,Debabrata Sircar,Ashwani Kumar Sharma
出处
期刊:Pesticide Biochemistry and Physiology [Elsevier]
卷期号:200: 105844-105844 被引量:3
标识
DOI:10.1016/j.pestbp.2024.105844
摘要

Enzymes have attracted considerable scientific attention for their crucial role in detoxifying a wide range of harmful compounds. In today's global context, the extensive use of insecticides has emerged as a significant threat to the environment, sparking substantial concern. Insects, including economically important pests like Helicoverpa armigera, have developed resistance to conventional pest control methods through enzymes like carboxyl/cholinesterases. This study specifically focuses on a notable carboxyl/cholinesterase enzyme from Helicoverpa armigera (Ha006a), with the goal of harnessing its potential to combat environmental toxins. A total of six insecticides belonging to two different classes displayed varying inhibitory responses towards Ha006a, thereby rendering it effective in detoxifying a broader spectrum of insecticides. The significance of this research lies in discovering the bioremediation property of Ha006a, as it hydrolyzes synthetic pyrethroids (fenvalerate, λ-cyhalothrin and deltamethrin) and sequesters organophosphate (paraoxon ethyl, profenofos, and chlorpyrifos) insecticides. Additionally, the interaction studies between organophosphate insecticides and Ha006a helped in the fabrication of a novel electroanalytical sensor using a modified carbon paste electrode (MCPE). This sensor boasts impressive sensitivity, with detection limits of 0.019 μM, 0.15 μM, and 0.025 μM for paraoxon ethyl, profenofos, and chlorpyrifos, respectively. This study provides a comprehensive biochemical and biophysical characterization of the purified esterase Ha006a, showcasing its potential to remediate different classes of insecticides.

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