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新型 2,5-取代基磺酰脲类化合物的化学制备、降解分析、计算对接和生物活性。

Chemical preparation, degradation analysis, computational docking and biological activities of novel sulfonylureas with 2,5-disubstituted groups.

机构信息

State-Key Laboratory and Research Institute of Elemento-Organic Chemistry, National Pesticide Engineering Research Center, College of Chemistry, Nankai University, Tianjin 300071, PR China.

State-Key Laboratory and Research Institute of Elemento-Organic Chemistry, National Pesticide Engineering Research Center, College of Chemistry, Nankai University, Tianjin 300071, PR China.

出版信息

Pestic Biochem Physiol. 2022 Nov;188:105261. doi: 10.1016/j.pestbp.2022.105261. Epub 2022 Oct 13.

Abstract

Based on the previous finding that a substitution at 5-position of the benzene ring is favorable to enhance the degradation rates of sulfonylurea herbicides, a total of 16 novel 2,5-disubsituted sulfonylurea compounds were chemically synthesized and fully characterized by means of H NMR, C NMR, HRMS and X-ray diffraction. By using HPLC analysis, the degradation behavior of M03, a compound belonging to this family, was studied and confirmed that chlorsulfuron itself is not a degraded product of the 2,5-disubstituted sulfonylureas. Inhibition constants against plant acetohydroxyacid synthase (AHAS) were determined for selected compounds, among which SU3 showed seven times stronger activity against the mutant W574L enzyme than chlorsulfuron. Molecular docking suggested that the substituted group at 5-position of benzene ring is likely to interact with the surrounding residues Met200 and Asp376 of AtAHAS. From the greenhouse herbicidal assay and crop safety test, SU5 and SU6 are considered as herbicide candidates to control dicotyledon weeds in corn, while SU3 is likely to be a promising candidate to control dicotyledon weed species and barnyard grass in wheat. The present research has therefore provided some new insights to understand the structure-activity relationships of herbicidal sulfonylureas with di-substitutions at benzene ring.

摘要

基于之前的研究发现,苯环 5 位取代有利于提高磺酰脲类除草剂的降解速率,本研究共合成了 16 种新型 2,5-二取代磺酰脲类化合物,并通过 1H NMR、13C NMR、HRMS 和 X 射线衍射对其进行了全面表征。通过 HPLC 分析,研究了属于该家族的化合物 M03 的降解行为,证实了氯磺隆本身不是 2,5-二取代磺酰脲类化合物的降解产物。测定了部分化合物对植物乙酰羟酸合酶(AHAS)的抑制常数,其中 SU3 对突变 W574L 酶的活性比氯磺隆强 7 倍。分子对接表明,苯环 5 位取代基可能与 AtAHAS 的周围残基 Met200 和 Asp376 相互作用。从温室除草试验和作物安全性试验来看,SU5 和 SU6 被认为是玉米中防治阔叶杂草的候选除草剂,而 SU3 可能是防治小麦阔叶杂草和稗草的有前途的候选除草剂。因此,本研究为理解苯环二取代磺酰脲类除草剂的构效关系提供了一些新的见解。

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