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新型含α-氨基酸功能的谷氨酰胺-氟虫腈缀合物的设计及其被拟南芥赖氨酸-组氨酸转运蛋白 1(AtLHT1)摄取。

Design of a New Glutamine-Fipronil Conjugate with α-Amino Acid Function and Its Uptake by A. thaliana Lysine Histidine Transporter 1 ( AtLHT1).

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 510642 , China.

Umeå Plant Science Centre, Department of Forest Genetics and Plant Physiology , Swedish University of Agricultural Sciences , SE-901 83 Umeå , Sweden.

出版信息

J Agric Food Chem. 2018 Jul 25;66(29):7597-7605. doi: 10.1021/acs.jafc.8b02287. Epub 2018 Jul 16.

Abstract

Creating novel pesticides with phloem mobility is essential for controlling insects in vascular tissue and root, and conjugating existing pesticides with amino acid is an effective approach. In order to obtain a highly phloem-mobile candidate for efficient pesticides, an electro-neutral l-glutamine-fipronil conjugate (l-GlnF) retaining α-amino acid function was designed and synthesized to fit the substrate specificity of an amino acid transporter. Cotyledon uptake and phloem loading tests with Ricinus communis have verified that l-GlnF was phloem mobile, and its phloem mobility was higher than that of its enantiomer d-GlnF and other previously reported amino acid-fipronil conjugates. Inhibition experiments then suggested that the uptake of l-GlnF was, at least partially, mediated by an active transport mechanism. This inference was further strengthened by assimilation experiments with Xenopus oocytes and genetically modified Arabidopsis thaliana, which showed a direct correlation between the uptake of l-GlnF and the expression of amino acid transporter AtLHT1. Thus, conjugation with l-Gln appears to be a potential strategy to ensure the uptake of pesticides via an endogenous amino acid transport system.

摘要

创制具有韧皮部输导性的新型杀虫剂对于防治维管束和根部的昆虫至关重要,而将现有杀虫剂与氨基酸偶联是一种有效的方法。为了获得高效杀虫剂的高韧皮部输导性候选物,设计并合成了一种电中性的 l-谷氨酰胺-氟虫腈轭合物(l-GlnF),保留了α-氨基酸的功能,以适应氨基酸转运体的底物特异性。蓖麻叶片的摄取和韧皮部装载试验证实了 l-GlnF 具有韧皮部输导性,其韧皮部输导性高于其对映体 d-GlnF 和其他先前报道的氨基酸-氟虫腈轭合物。抑制实验随后表明,l-GlnF 的摄取至少部分是通过主动运输机制介导的。该推论通过 Xenopus oocytes 和遗传修饰的拟南芥的同化实验得到进一步加强,实验表明 l-GlnF 的摄取与氨基酸转运体 AtLHT1 的表达之间存在直接相关性。因此,与 l-Gln 偶联似乎是一种通过内源性氨基酸运输系统确保杀虫剂摄取的潜在策略。

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