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人虱 GRD 和 LCCH3 型γ-氨基丁酸受体亚基的分子与功能特征

Molecular and Functional Characterization of GABA Receptor Subunits GRD and LCCH3 from Human Louse .

机构信息

INRAE, Université de Tours, ISP, BioMAP, 37200, Tours, France (O.H., B.T., I.D.-P., F.D.-G., C.D.); Department of Pharmacology, Faculty of Pharmacy, University of Gezira, Wad Madani, Sudan (O.H.); INRAE, Université de Tours, ISP, MPN, 37380, Nouzilly, France (C.L.C., N.L., C.N.); Department of Pharmacology, Albaha University, Alaqiq, Saudi Arabia (A.A.E.A.); and Department of Pharmacology and Toxicology, Omdurman Islamic University, Omdurman, Sudan (A.A.E.A.).

INRAE, Université de Tours, ISP, BioMAP, 37200, Tours, France (O.H., B.T., I.D.-P., F.D.-G., C.D.); Department of Pharmacology, Faculty of Pharmacy, University of Gezira, Wad Madani, Sudan (O.H.); INRAE, Université de Tours, ISP, MPN, 37380, Nouzilly, France (C.L.C., N.L., C.N.); Department of Pharmacology, Albaha University, Alaqiq, Saudi Arabia (A.A.E.A.); and Department of Pharmacology and Toxicology, Omdurman Islamic University, Omdurman, Sudan (A.A.E.A.)

出版信息

Mol Pharmacol. 2021 Aug;102(2):116-127. doi: 10.1124/molpharm.122.000499. Epub 2022 Jul 19.

Abstract

Human louse is a cosmopolitan obligatory blood-feeding ectoparasite causing pediculosis and transmitting many bacterial pathogens. Control of infestation is difficult due to the developed resistance to insecticides that mainly target GABA (-aminobutyric acid) receptors. Previous work showed that (Phh) GABA receptor subunit resistance to dieldrin (RDL) is the target of lotilaner, a synthetic molecule of the isoxazoline chemical class. To enhance our understanding of how insecticides act on GABA receptors, two other GABA receptor subunits were cloned and characterized: three variants of (glycine-like receptor of ) and one variant of (ligand-gated chloride channel homolog 3). Relative mRNA expression levels of , , and revealed that they were expressed throughout the developmental stages (eggs, larvae, adults) and in the different parts of adult lice (head, thorax, and abdomen). When expressed individually in the oocyte heterologous expression system, Phh-GRD1, Phh-GRD2, Phh-GRD3, and Phh-LCCH3 were unable to reconstitute functional channels, whereas the subunit combinations Phh-GRD1/Phh-LCCH3, Phh-GRD1/Phh-RDL, and Phh-LCCH3/Phh-RDL responded to GABA in a concentration-dependent manner. The three heteromeric receptors were similarly sensitive to the antagonistic effect of picrotoxin and fipronil, whereas Phh-GRD1/Phh-RDL and Phh-LCCH3/Phh-RDL were respectively about 2.5-fold and 5-fold more sensitive to ivermectin than Phh-GRD1/Phh-LCCH3. Moreover, the heteropentameric receptor constituted by Phh-GRD1/Phh-LCCH3 was found to be permeable and highly sensitive to the extracellular sodium concentration. These findings provided valuable additions to our knowledge of the complex nature of GABA receptors in human louse that could help in understanding the resistance pattern to commonly used pediculicides. SIGNIFICANCE STATEMENT: Human louse is an ectoparasite that causes pediculosis and transmits several bacterial pathogens. Emerging strains developed resistance to the commonly used insecticides, especially those targeting GABA receptors. To understand the molecular mechanisms underlying this resistance, two subunits of GABA receptors were cloned and described: and . The heteromeric receptor reconstituted with the two subunits was functional in oocytes and sensitive to commercially available insecticides. Moreover, both subunits were transcribed throughout the parasite lifecycle.

摘要

人体虱是一种世界性的强制性吸血外寄生虫,会引起头虱病并传播许多细菌病原体。由于对主要针对 GABA(-氨基丁酸)受体的杀虫剂产生了抗药性,因此很难控制其感染。以前的研究表明,(Phh)GABA 受体亚基对狄氏剂(RDL)的抗性是利拉萘酯的作用靶点,利拉萘酯是异噁唑啉类化学物质的合成分子。为了增强我们对杀虫剂如何作用于 GABA 受体的理解,还克隆和表征了另外两个 GABA 受体亚基:(GABA 类似物受体的)的三个变体和一个(配体门控氯离子通道同源物 3)变体。、和的相对 mRNA 表达水平表明,它们在整个发育阶段(卵、幼虫、成虫)以及成年虱子的不同部位(头、胸、腹)中都有表达。当在异源表达系统的卵母细胞中单独表达时,Phh-GRD1、Phh-GRD2、Phh-GRD3 和 Phh-LCCH3 均无法重建功能性通道,而亚基组合 Phh-GRD1/Phh-LCCH3、Phh-GRD1/Phh-RDL 和 Phh-LCCH3/Phh-RDL 则以浓度依赖性方式对 GABA 做出反应。这三种杂合受体对苦味酸毒素和氟虫腈的拮抗作用同样敏感,而 Phh-GRD1/Phh-RDL 和 Phh-LCCH3/Phh-RDL 对伊维菌素的敏感性分别比 Phh-GRD1/Phh-LCCH3 高约 2.5 倍和 5 倍。此外,由 Phh-GRD1/Phh-LCCH3 构成的杂五聚体受体对细胞外钠离子浓度具有通透性和高度敏感性。这些发现为我们了解人体虱 GABA 受体的复杂性质提供了有价值的补充,这有助于我们理解对常用杀虱剂的耐药模式。

意义陈述

人体虱是一种引起头虱病并传播几种细菌病原体的外寄生虫。新兴菌株对常用杀虫剂,特别是针对 GABA 受体的杀虫剂产生了抗药性。为了了解这种抗药性的分子机制,克隆并描述了两个 GABA 受体亚基:和。用这两个亚基重建的杂合受体在卵母细胞中具有功能性,并对市售杀虫剂敏感。此外,这两个亚基在寄生虫的整个生命周期中都有转录。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/6890/11037462/072614f8b19d/molpharm.122.000499absf1.jpg

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