<p>A series of novel isoquinoline derivatives <b>5a</b>—<b>5&#xa0;s</b> incorporating bioactive amide and oxime ester moieties were rationally designed and synthesized based-on isoquinoline alkaloid scaffolds through pharmacophore splicing strategy. Their structures were verified by <sup>1</sup>H NMR, <sup>13</sup>C NMR, IR and HRMS. The fungicidal bioassay indicated that most of the target compounds showed good to excellent inhibitory activity against five phytopathogenic fungi in vitro at a concentration of 50&#xa0;mg/L. Notably, compounds <b>5&#xa0;l</b> and <b>5q</b> exhibited excellent fungicidal activity against <i>S. sclerotiorum</i> with EC<sub>50</sub> values reached 8.27 and 8.18&#xa0;mg/L, respectively, which were comparable to boscalid (8.03&#xa0;mg/L). 5q exhibited 100% protective and 73.87% curative efficacy against S. sclerotiorum on Brassica napus L. leaves at 100 mg/L. Particularly, compound <b>5q</b> exhibits potent inhibitory effect against Succinate dehydrogenase (SDH) of <i>S. sclerotiorum</i> with IC<sub>50</sub> of 5.05 uΜ. Furthermore, SDH activity assays and molecular docking analyses demonstrated that <b>5q</b> can interact with SDH in a variety of ways. These results provide substantial insight for the development of novel natural-derived isoquinoline derivatives as potential antifungal agents.</p> Graphic abstract <p>A series of novel isoquinoline derivatives <b>5a </b>- <b>5s </b>were designed and synthesized based-on isoquinoline alkaloids. The bioassay and antifungal mechanism studies indicated that <b>5q </b>should be considered as a potential antifungal candidate.</p> <p></p>

错误:搜索内容不能为空,请输入英文关键词
错误:关键词超出字数限制,请精简
高级检索

Design, synthesis, and mechanism study of novel isoquinoline derivatives containing an oxime moiety as antifungal agents

  • Yanxi Jin,
  • Fu Chen,
  • Ying Long,
  • Jianeng Luo,
  • Si Guo,
  • LuYao Wang,
  • Wei Chen

摘要

A series of novel isoquinoline derivatives 5a5 s incorporating bioactive amide and oxime ester moieties were rationally designed and synthesized based-on isoquinoline alkaloid scaffolds through pharmacophore splicing strategy. Their structures were verified by 1H NMR, 13C NMR, IR and HRMS. The fungicidal bioassay indicated that most of the target compounds showed good to excellent inhibitory activity against five phytopathogenic fungi in vitro at a concentration of 50 mg/L. Notably, compounds 5 l and 5q exhibited excellent fungicidal activity against S. sclerotiorum with EC50 values reached 8.27 and 8.18 mg/L, respectively, which were comparable to boscalid (8.03 mg/L). 5q exhibited 100% protective and 73.87% curative efficacy against S. sclerotiorum on Brassica napus L. leaves at 100 mg/L. Particularly, compound 5q exhibits potent inhibitory effect against Succinate dehydrogenase (SDH) of S. sclerotiorum with IC50 of 5.05 uΜ. Furthermore, SDH activity assays and molecular docking analyses demonstrated that 5q can interact with SDH in a variety of ways. These results provide substantial insight for the development of novel natural-derived isoquinoline derivatives as potential antifungal agents.

Graphic abstract

A series of novel isoquinoline derivatives 5a - 5s were designed and synthesized based-on isoquinoline alkaloids. The bioassay and antifungal mechanism studies indicated that 5q should be considered as a potential antifungal candidate.