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突变β-肾上腺素样章鱼胺受体对阿米曲唑敏感性增强的机制:来自 MD 模拟的见解。

Mechanism of enhanced sensitivity of mutated β-adrenergic-like octopamine receptor to amitraz in honeybee Apis mellifera: An insight from MD simulations.

机构信息

College of Life Sciences, Nanjing Agricultural University, Nanjing, China.

Engineering Research Centre of Applied Technology on Machine Translation and Artificial Intelligence, Centre in Artificial Intelligence Driven Drug Discovery, Faculty of Applied Science, Macao Polytechnic University, Macao, China.

出版信息

Pest Manag Sci. 2022 Dec;78(12):5423-5431. doi: 10.1002/ps.7164. Epub 2022 Sep 17.

Abstract

BACKGROUND

Amitraz is one of the critical acaricides/insecticides for effective control of pest infestation of Varroa destructor mite, a devastating parasite of Apis mellifera, because of its low toxicity to honeybees. Previous assays verified that a typical G protein-coupled receptor, β-adrenergic-like octopamine receptor (Octβ2R), is the unique target of amitraz, but the honeybee Octβ2R resists to amitraz. However, the underlying molecular mechanism of the enhanced sensitivity or toxicity of amitraz to mutated honeybee Octβ2R is not fully understood. Here, molecular dynamics simulations are employed to explore the implied mechanism of the enhanced sensitivity to amitraz in mutant honeybee Octβ2R.

RESULTS

We found that amitraz binding stabilized the structure of Octβ2R, particularly the intracellular loop 3 associated with the Octβ2R signaling. Then, it was further demonstrated that both mutations and ligand binding resulted in a more rigid and compact amitraz binding site, as well as the outward movement of the transmembrane helix 6, which was a prerequisite for G protein coupling and activation. Moreover, mutations were found to promote the binding between Octβ2R and amitraz. Finally, community analysis illuminated that mutations and amitraz strengthened the residue-residue communication within the transmembrane domain, which might facilitate the allosteric signal propagation and activation of Octβ2R.

CONCLUSION

Our results unveiled structural determinants of improved sensitivity in the Octβ2R-amitraz complex and may contribute to further structure-based drug design for safer and less toxic selective insecticides. © 2022 Society of Chemical Industry.

摘要

背景

阿米曲斯是防治瓦螨这种对蜜蜂具有破坏性的寄生虫的关键杀螨剂/杀虫剂之一,因为它对蜜蜂的毒性较低。先前的试验验证了典型的 G 蛋白偶联受体β-肾上腺素样章鱼胺受体(Octβ2R)是阿米曲斯的唯一靶标,但蜜蜂的 Octβ2R 能抵抗阿米曲斯。然而,阿米曲斯对突变的蜜蜂 Octβ2R 的增强敏感性或毒性的潜在分子机制尚不完全清楚。在此,我们采用分子动力学模拟来探索突变的蜜蜂 Octβ2R 对阿米曲斯增强敏感性的隐含机制。

结果

我们发现,阿米曲斯结合稳定了 Octβ2R 的结构,特别是与 Octβ2R 信号相关的细胞内环 3。然后,进一步表明突变和配体结合导致阿米曲斯结合位点更僵硬和紧凑,以及跨膜螺旋 6 的向外移动,这是 G 蛋白偶联和激活的前提。此外,突变被发现促进了 Octβ2R 与阿米曲斯的结合。最后,社区分析表明突变和阿米曲斯增强了跨膜域内的残基-残基相互作用,这可能有助于 Octβ2R 的变构信号传递和激活。

结论

我们的研究结果揭示了 Octβ2R-阿米曲斯复合物中提高敏感性的结构决定因素,可能有助于进一步基于结构的药物设计,以实现更安全、毒性更低的选择性杀虫剂。© 2022 英国化学学会。

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