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两种 Sigma 和两种 Mu 类谷胱甘肽 S-转移酶基因在水蚤 Daphnia pulex 中的研究:分子特征及对纳米塑料暴露的转录响应。

Two sigma and two mu class genes of glutathione S-transferase in the waterflea Daphnia pulex: Molecular characterization and transcriptional response to nanoplastic exposure.

机构信息

School of Life Science, East China Normal University, Shanghai, 200241, China.

School of Life Science, East China Normal University, Shanghai, 200241, China; State Key Laboratory of Estuarine and Coastal Research, East China Normal University, Shanghai, 200241, China.

出版信息

Chemosphere. 2020 Jun;248:126065. doi: 10.1016/j.chemosphere.2020.126065. Epub 2020 Jan 31.

Abstract

Two isoforms of Glutathione S-Transferase (GST) genes, belonging to mu (Dp-GSTm1 and Dp-GSTm2) and sigma (Dp-GSTs1 and Dp-GSTs2) classes, were cloned and characterised in the freshwater Daphnia pulex. No signal peptide was found in any of the four GST proteins, indicating that they were cytosolic GST. A highly conserved glutathione (GSH) binding site (G-site) occurred in the N-terminal sequence, and a substrate binding site (H-site), interacting non-specifically with the second hydrophobic substrate, was present in the C-terminal. A Tyr residue, for the stabilization of GSH, was found to be conserved in the analysed sequences. The secondary and tertiary structures indicated that these genes possess the typical cytosolic GST structure, including a conserved N-terminal domain with a βαβαββα motif. The μ loop (NVGPAPDYDR and NFIGAEWDR in Dp-GSTm1 and Dp-GSTm2, respectively) was identified between the βαβ (β1α1β2) and αββα motifs (α2β3β4α3) in the N-terminal domain. The expressions of Dp-GSTs1, Dp-GSTs2, and Dp-GSTm1 were higher in other age groups compared to the newly-born neonates (1 d); however, the expression of Dp-GSTm2 first increased and then decreased with age. Gene expression was significantly reduced by high concentration (1 and 2 mg/L) of 75 nm polystyrene nanoplastic. However, nanoplastic exposure at the predicted environmental concentration (1 μg/L) had a low effect. Exposure of mothers to nanoplastic (1 μg/L) elevated the Dp-GSTs2 level in their neonates. These results improve our understanding on the response of different types of Daphnid GST to environmental contaminants, especially nanoplastic.

摘要

两种谷胱甘肽 S-转移酶 (GST) 基因同工型(属于 μ(Dp-GSTm1 和 Dp-GSTm2)和 σ(Dp-GSTs1 和 Dp-GSTs2)类)在淡水溞属中被克隆并进行了特征描述。在这四种 GST 蛋白中都没有发现信号肽,表明它们是细胞溶质 GST。在 N 端序列中存在一个高度保守的谷胱甘肽 (GSH) 结合位点(G 位点),在 C 端存在一个与第二个疏水性底物非特异性相互作用的底物结合位点(H 位点)。分析序列中发现保守的 Tyr 残基,用于 GSH 的稳定。二级和三级结构表明,这些基因具有典型的细胞溶质 GST 结构,包括保守的 N 端结构域和 βαβαββα基序。μ 环(Dp-GSTm1 和 Dp-GSTm2 中的 NVGPAPDYDR 和 NFIGAEWDR)分别在 N 端结构域的 βαβ(β1α1β2)和 αββα 基序(α2β3β4α3)之间被识别。与刚孵化的幼体(1 天)相比,Dp-GSTs1、Dp-GSTs2 和 Dp-GSTm1 在其他年龄组中的表达更高;然而,Dp-GSTm2 的表达随着年龄的增长先增加后减少。高浓度(1 和 2mg/L)75nm 聚苯乙烯纳米塑料显著降低基因表达。然而,在预测的环境浓度(1μg/L)下,纳米塑料的暴露效果较低。母亲暴露于纳米塑料(1μg/L)会提高其幼体中 Dp-GSTs2 的水平。这些结果提高了我们对不同类型溞 GST 对环境污染物(尤其是纳米塑料)的反应的理解。

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