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从蝎毒腺中分离出的生物杀虫蛋白的鉴定、特性分析和建模:三指蛋白。

Identification, Characterization, and Modeling of a Bioinsecticide Protein Isolated from Scorpion Venom gland: A Three-Finger Protein.

机构信息

Toxicology Research Center, Medical Basic Sciences Research Institute, Ahvaz Jundishapur University of Medical Sciences, Ahvaz, Iran.

Department of Toxicology, School of Pharmacy, Toxicology Research Center, Medical Basic Sciences Research Institute, Ahvaz Jundishapur University of Medical Sciences, Ahvaz, Iran.

出版信息

Iran Biomed J. 2023 Jul 1;27(4):158-66. doi: 10.61186/ibj.3885.

Abstract

BACKGROUND

The majority of insecticides target sodium channels. The increasing emergence of resistance to the current insecticides has persuaded researchers to search for alternative compounds. Scorpion venom gland as a reservoir of peptides or proteins, which selectively target insect sodium channels. These proteins would be an appropriate source for finding new suitable anti-insect components.

METHODS

Transcriptome of venom gland of scorpion Mesobuthus eupeus was obtained by RNA extraction and complementary DNA library synthesis. The obtained transcriptome was blasted against protein databases to find insect toxins against sodium channel based on the statistically significant similarity in sequence. Physicochemical properties of the identified protein were calculated using bioinformatics software. The three-dimensional structure of this protein was determined using homology modeling, and the final structure was assessed by molecular dynamics simulation.

RESULTS

The sodium channel blocker found in the transcriptome of M. eupeus venom gland was submitted to the GenBank under the name of meuNa10, a stable hydrophilic protein consisting of 69 amino acids, with the molecular weight of 7721.77 g/mol and pI of 8.7. The tertiary structure of meuNa10 revealed a conserved LCN-type cysteine-stabilized alpha/beta domain stabilized by eight cysteine residues. The meuNa10 is a member of the 3FP superfamily consisting of three finger-like beta strands.

CONCLUSION

This study identified meuNa10 as a small insect sodium channel-interacting protein with some physicochemical properties, including stability and water-solubility, which make it a good candidate for further in vivo and in vitro experiments in order to develop a new bioinsecticide.

摘要

背景

大多数杀虫剂的靶标是钠离子通道。目前杀虫剂的耐药性不断增加,促使研究人员寻找替代化合物。蝎子毒液腺作为肽或蛋白质的储存库,这些肽或蛋白质选择性地靶向昆虫的钠离子通道。这些蛋白质将是寻找新的合适抗昆虫成分的合适来源。

方法

通过 RNA 提取和 cDNA 文库合成获得蝎子 Mesobuthus eupeus 毒液腺的转录组。将获得的转录组与蛋白质数据库进行比对,根据序列上具有统计学意义的相似性,寻找针对钠离子通道的昆虫毒素。使用生物信息学软件计算鉴定出的蛋白质的理化性质。使用同源建模确定该蛋白质的三维结构,并通过分子动力学模拟评估最终结构。

结果

从 M. eupeus 毒液腺转录组中发现的钠离子通道阻断剂被提交到 GenBank,命名为 meuNa10,这是一种由 69 个氨基酸组成的稳定亲水蛋白,分子量为 7721.77g/mol,等电点为 8.7。meuNa10 的三级结构揭示了一个保守的 LCN 型半胱氨酸稳定的 α/β 结构域,由八个半胱氨酸残基稳定。meuNa10 是由三个指状 β 链组成的 3FP 超家族的成员。

结论

本研究鉴定出 meuNa10 是一种与昆虫钠离子通道相互作用的小蛋白,具有一些理化性质,包括稳定性和水溶性,使其成为进一步进行体内和体外实验以开发新型生物杀虫剂的良好候选物。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/4fee/10507287/e2bb368c019a/ibj-27-158-g001.jpg

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