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壬基酚在植物中的吸收与代谢:涉及直接共轭的异构体选择性

Uptake and metabolism of nonylphenol in plants: Isomer selectivity involved with direct conjugation.

作者信息

Sun Jianqiang, Yang Xindong, Shen Hong, Xu Ying, Zhang Anping, Gan Jay

机构信息

Key Laboratory of Microbial Technology for Industrial Pollution Control of Zhejiang Province, Zhejiang University of Technology, Hangzhou, 310014, China.

Key Laboratory of Microbial Technology for Industrial Pollution Control of Zhejiang Province, Zhejiang University of Technology, Hangzhou, 310014, China.

出版信息

Environ Pollut. 2021 Feb 1;270:116064. doi: 10.1016/j.envpol.2020.116064. Epub 2020 Nov 11.

Abstract

Nonylphenol (NP), an environmental estrogen, is actually a complicated mixture of isomers, although it is commonly considered to be a single compound. There are many routes for crops to come into contact with NP; however, little is known about the plant uptake and metabolism of NP, especially at the isomer level. This study comparatively evaluated the uptake and in-planta metabolism of 4-n-NP and its 10 isomers using both carrot cells and intact plants. The rapid metabolism of 4-n-NP was observed in the callus tissues and intact plants with half-lives of 2 h and 4.72 d, respectively. Six conjugates of 4-n-NP were identified in the cell extracts using high resolution mass spectrometry. The primary transformation pathway was found to be the direct conjugation (Phase II metabolism) with the parent compound at the hydroxyl. Furthermore, 4-NP isomers with short side chains and/or bulky α-substituents were more resistant to plant metabolism and showed a greater tendency for accumulation. The influence of the side chains to the isomer selectivity was verified by the molecular docking between glycosyltransferase and 4-NP isomers. This study highlighted the necessity to consider isomer-specificity in the plant accumulation of NP and the environmental and human health implications of NP conjugates.

摘要

壬基酚(NP)是一种环境雌激素,实际上是一种异构体的复杂混合物,尽管通常被认为是单一化合物。作物接触NP的途径有很多;然而,关于NP在植物中的吸收和代谢,尤其是在异构体水平上,人们了解甚少。本研究使用胡萝卜细胞和完整植株,比较评估了4-正壬基酚及其10种异构体的吸收和植物体内代谢。在愈伤组织和完整植株中均观察到4-正壬基酚的快速代谢,半衰期分别为2小时和4.72天。使用高分辨率质谱在细胞提取物中鉴定出4-正壬基酚的六种共轭物。发现主要转化途径是母体化合物在羟基处直接共轭(II相代谢)。此外,具有短侧链和/或庞大α-取代基的4-NP异构体对植物代谢更具抗性,且积累趋势更大。通过糖基转移酶与4-NP异构体之间的分子对接,验证了侧链对异构体选择性的影响。本研究强调了在NP的植物积累中考虑异构体特异性以及NP共轭物对环境和人类健康影响的必要性。

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