Design of a New Glutamine–Fipronil Conjugate with α-Amino Acid Function and Its Uptake by A. thaliana Lysine Histidine Transporter 1 (AtLHT1)
0301 basic medicine
Arabidopsis Proteins
Ricinus
Glutamine
Xenopus
Arabidopsis
Biological Transport
Phloem
03 medical and health sciences
Seedlings
Drug Design
Oocytes
Amino Acid Transport Systems, Basic
Animals
Pyrazoles
Amino Acids
Pesticides
DOI:
10.1021/acs.jafc.8b02287
Publication Date:
2018-06-26T17:27:55Z
AUTHORS (7)
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.
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