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叶肢介 P-糖蛋白的 ABC 基础:模式物种贝加尔湖光滑沼虾(叶肢介目:涟虫科)Abcb1 蛋白的异源生产。

The ABCs of the amphipod P-glycoprotein: Heterologous production of the Abcb1 protein of a model species Eulimnogammarus verrucosus (Amphipoda: Gammaridae) from Lake Baikal.

机构信息

Institute of Biology, Irkutsk State University, Lenin str. 3, RUS-664025 Irkutsk, Russia; Baikal Research Centre, Lenin str. 21, RUS-664003 Irkutsk, Russia.

Institute of Molecular and Cellular Biology, Siberian Branch of Russian Academy of Sciences, Acad. Lavrentiev Ave. 8/2, RUS-630090 Novosibirsk, Russia.

出版信息

Comp Biochem Physiol C Toxicol Pharmacol. 2023 Sep;271:109677. doi: 10.1016/j.cbpc.2023.109677. Epub 2023 Jun 9.

Abstract

The multixenobiotic resistance (MXR) mechanism has been demonstrated to be present in a wide range of species, including aquatic organisms. However, amphipods (Crustacea: Malacostraca: Amphipoda), which constitute a large order of arthropods, are extremely poorly studied in this regard. Information on MXR proteins in these animals would be highly relevant, as some amphipods are important models in ecotoxicology due to their roles in many freshwater environments, including the ancient Lake Baikal. In this work, we studied the diversity of ABC transporters in the available transcriptomes of over 60 endemic Baikal amphipods in comparison to other related species. This showed that most classes of ABC transporters are present in all analyzed species and that most Baikal amphipods detectably express no more than one complete ABCB full transporter. We also showed that these sequences were conservative across different species, and their phylogeny was congruent with the species phylogeny. Thus, we chose the abcb1 coding sequence from Eulimnogammarus verrucosus, a widespread species playing an important role in the lake ecosystem, to establish the first heterologous expression system for an amphipod Abcb1/P-glycoprotein based on the Drosophila melanogaster S2 cell line. The resulting stably transfected S2 cell line was expressing the abcb1 of E. verrucosus about 1000 times higher than the homologous fly genes, and the target protein, Abcb1, showed to confer a high MXR-related efflux activity. Our results indicate the suitability of the S2-based expression systems for the study of arthropod ABCB1 homologs.

摘要

多药耐药(MXR)机制已被证明存在于广泛的物种中,包括水生生物。然而,在这方面,作为节肢动物中最大的一个目——端足目甲壳动物(Crustacea: Malacostraca: Amphipoda)的研究极其匮乏。这些动物的 MXR 蛋白信息将非常重要,因为一些端足目甲壳动物由于在许多淡水环境中(包括古老的贝加尔湖)的重要作用,成为生态毒理学的重要模型。在这项工作中,我们研究了 60 多种特有贝加尔湖端足类动物的可用转录组中 ABC 转运蛋白的多样性,并与其他相关物种进行了比较。结果表明,所有分析的物种中都存在大多数 ABC 转运蛋白类别,并且大多数贝加尔湖端足目甲壳动物检测到的完整 ABCB 全转运蛋白表达不超过一种。我们还表明,这些序列在不同物种中是保守的,它们的系统发育与物种系统发育一致。因此,我们选择了广布种 Eulimnogammarus verrucosus 的 abcb1 编码序列,该物种在湖泊生态系统中起着重要作用,以建立基于 Drosophila melanogaster S2 细胞系的第一个用于端足目 Abcb1/P-糖蛋白的异源表达系统。由此产生的稳定转染 S2 细胞系表达 E. verrucosus 的 abcb1 是同源果蝇基因的 1000 倍左右,并且目标蛋白 Abcb1 表现出高的 MXR 相关外排活性。我们的结果表明,基于 S2 的表达系统适合研究节肢动物 ABCB1 同源物。

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