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合成并表征了一种带有氯噻啉基配体的人工硫代葡萄糖苷,作为一种有效的硫代葡萄糖苷转运蛋白抑制剂。

Synthesis and characterization of an artificial glucosinolate bearing a chlorthalonil-based aglycon as a potent inhibitor of glucosinolate transporters.

机构信息

State Key Laboratory for Conservation and Utilization of Subtropical Agro-bioresources and Key Laboratory of Natural Pesticide and Chemical Biology, Ministry of Education, South China Agricultural University, Guangzhou, Guangdong, 510642, China.

Institute of Quality Standard and Monitoring Technology for Agro-products of Guangdong Academy of Agricultural Sciences and Guangdong Provincial Key Laboratory of Quality & Safety Risk Assessment for Agro-products, Guangzhou, Guangdong, 510640, China.

出版信息

Phytochemistry. 2023 Aug;212:113726. doi: 10.1016/j.phytochem.2023.113726. Epub 2023 May 18.

Abstract

Glucosinolates (GSLs) are specialized metabolites in plants of the order Brassicales. GSL transporters (GTRs) are essential for the redistribution of GSLs and also play a role in controlling the GSL content of seeds. However, specific inhibitors of these transporters have not been reported. In the current study, we described the design and synthesis of 2,3,4,6-tetrachloro-5-cyanophenyl GSL (TCPG), an artificial GSL bearing a chlorothalonil moiety as a potent inhibitor of GTRs, and evaluated its inhibitory effect on the substrate uptake mediated through GTR1 and GTR2. Molecular docking showed that the position of the β-D-glucose group of TCPG was significantly different from that of the natural substrate in GTRs and the chlorothalonil moiety forms halogen bonds with GTRs. Functional assays and kinetic analysis of the transport activity revealed that TCPG could significantly inhibit the transport activity of GTR1 and GTR2 (IC values (mean ± SD) being 79 ± 16 μM and 192 ± 14 μM, respectively). Similarly, TCPG could inhibit the uptake and phloem transport of exogenous sinigrin by Arabidopsis thaliana (L.) Heynh leaf tissues, while not affecting that of esculin (a fluorescent surrogate for sucrose). TCPG could also reduce the content of endogenous GSLs in phloem exudates. Together, TCPG was discovered as an undescribed inhibitor of the uptake and phloem transport of GSLs, which brings novel insights into the ligand recognition of GTRs and provides a new strategy to control the GSL level. Further tests on the ecotoxicological and environmental safety of TCPG are needed before using it as an agricultural or horticultural chemical in the future.

摘要

硫代葡萄糖苷(GSLs)是芸薹属植物中的一种特殊代谢物。GSL 转运蛋白(GTRs)对于 GSL 的再分配至关重要,同时在控制种子中 GSL 含量方面也发挥着作用。然而,目前尚未报道这些转运蛋白的特定抑制剂。在本研究中,我们描述了 2,3,4,6-四氯-5-氰基苯基 GSL(TCPG)的设计和合成,这是一种带有百菌清部分的人工 GSL,是 GTRs 的有效抑制剂,并评估了其对 GTR1 和 GTR2 介导的底物摄取的抑制作用。分子对接表明,TCPG 的β-D-葡萄糖基团的位置与 GTR 中的天然底物明显不同,而且百菌清部分与 GTRs 形成卤键。转运活性的功能测定和动力学分析表明,TCPG 可显著抑制 GTR1 和 GTR2 的转运活性(IC 值(平均值±SD)分别为 79±16μM 和 192±14μM)。同样,TCPG 可以抑制拟南芥叶片组织中外源黑芥子苷的摄取和韧皮部运输,而不影响荧光蔗糖替代物 esculin 的摄取和韧皮部运输。TCPG 还可以降低韧皮部渗出物中内源性 GSL 的含量。总之,TCPG 被发现是一种未被描述的 GSL 摄取和韧皮部运输抑制剂,这为 GTR 配体识别提供了新的见解,并为控制 GSL 水平提供了新的策略。在将来将 TCPG 用作农业或园艺化学品之前,需要进一步测试其生态毒理学和环境安全性。

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