Design, synthesis, and biological activities of arecoline derivatives containing 1,3,4-oxadiazole structure.

Bioorg Chem

Tianjin Key Laboratory of Structure and Performance for Functional Molecules, College of Chemistry, Tianjin Normal University, Tianjin 300387, China. Electronic address:

Published: October 2024

AI Article Synopsis

  • Pesticides are crucial for agriculture, helping to prevent crop diseases and improve yields, but misuse can cause environmental harm and pest resistance.
  • A series of arecoline-derived compounds were created and tested, showing promising antiviral activity against the tobacco mosaic virus (TMV), with some outperforming the existing treatment, ningnanmycin.
  • Compound 4h showed excellent antiviral properties and was found to disrupt the virus's coat protein, and these derivatives also demonstrated fungicidal effects against various plant pathogens, suggesting their potential in agriculture.

Article Abstract

Pesticides play an important role in the development of agriculture, as they can prevent and control crop diseases and pests, improve crop yield and quality. However, the abuse and improper use of pesticides can lead to negative impacts such as environmental pollution and pest resistance issues. There is an urgent need to develop green, safe, and efficient pesticides. In this work, natural product arecoline was selected as parent structure, a series of arecoline derivatives were designed, synthesized, and systematically investigated antiviral activities against tobacco mosaic virus (TMV). These compounds were found to have good to excellent anti-TMV activities for the first time. The antiviral activities of 4a, 4 h, 4 l, 4p, 6a, 6c, and 6f are higher than that of ningnanmycin. Compounds 4 h (EC value 146 µg/mL) and 4p (EC value 161 µg/mL) with simple structures and excellent activities emerged as new antiviral candidates. We chose 4 h to further investigate the antiviral mechanism, which revealed that it can cause virus fragmentation by acting on the viral coat protein (CP). We further validated this result through molecular docking. These compounds also displayed broad-spectrum fungicidal activities against 8 plant pathogenic fungi. This work lays the theoretical foundation for the application of arecoline derivatives in the agricultural field.

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Source
http://dx.doi.org/10.1016/j.bioorg.2024.107708DOI Listing

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