Department of Entomology, Pennsylvania State University, University Park, PA 16802, USA.
Department of Entomology and MOA Key Lab of Pest Monitoring and Green Management, College of Plant Protection, China Agricultural University, Beijing 100193, China.
Int J Mol Sci. 2021 Nov 3;22(21):11921. doi: 10.3390/ijms222111921.
Arthropod Glutathione S-transferases (GSTs) constitute a large family of multifunctional enzymes that are mainly associated with xenobiotic or stress adaptation. GST-mediated xenobiotic adaptation takes place through direct metabolism or sequestration of xenobiotics, and/or indirectly by providing protection against oxidative stress induced by xenobiotic exposure. To date, the roles of GSTs in xenobiotic adaptation in the Colorado potato beetle (CPB), a notorious agricultural pest of plants within Solanaceae, have not been well studied. Here, we functionally expressed and characterized an unclassified-class GST, LdGSTu1. The three-dimensional structure of the LdGSTu1 was solved with a resolution up to 1.8 Å by X-ray crystallography. The signature motif VSDGPPSL was identified in the "G-site", and it contains the catalytically active residue Ser14. Recombinant LdGSTu1 was used to determine enzyme activity and kinetic parameters using 1-chloro-2, 4-dinitrobenzene (CDNB), GSH, p-nitrophenyl acetate (PNA) as substrates. The enzyme kinetic parameters and enzyme-substrate interaction studies demonstrated that LdGSTu1 could catalyze the conjugation of GSH to both CDNB and PNA, with a higher turnover number for CDNB than PNA. The LdGSTu1 enzyme inhibition assays demonstrated that the enzymatic conjugation of GSH to CDNB was inhibited by multiple pesticides, suggesting a potential function of LdGSTu1 in xenobiotic adaptation.
节肢动物谷胱甘肽 S-转移酶(GSTs)构成了一个多功能酶的大家族,主要与外来生物或应激适应有关。GST 介导的外来生物适应通过直接代谢或隔离外来生物,或者通过提供对暴露于外来生物引起的氧化应激的保护来进行。迄今为止,GSTs 在茄科植物的著名农业害虫——科罗拉多马铃薯甲虫(CPB)中的外来生物适应中的作用尚未得到很好的研究。在这里,我们功能表达和表征了一个未分类 GST,LdGSTu1。通过 X 射线晶体学,LdGSTu1 的三维结构被解析到 1.8 Å 的分辨率。在“G 位”中鉴定出特征基序 VSDGPPSL,它包含催化活性残基 Ser14。使用 1-氯-2,4-二硝基苯(CDNB)、GSH、对硝基苯乙酸酯(PNA)作为底物,用重组 LdGSTu1 来确定酶活性和动力学参数。酶动力学参数和酶-底物相互作用研究表明,LdGSTu1 可以催化 GSH 与 CDNB 和 PNA 的共轭,对 CDNB 的周转率高于 PNA。LdGSTu1 酶抑制测定表明,GSH 与 CDNB 的酶促共轭被多种杀虫剂抑制,这表明 LdGSTu1 在外来生物适应中可能具有潜在功能。