Lu Aidang, Wang Jinjin, Liu Tengjiao, Han Jian, Li Yinhui, Su Min, Chen Jianxin, Zhang Hui, Wang Lizhong, Wang Qingmin
School of Marine Science and Engineering and ‡School of Chemical Engineering, Hebei University of Technology , Tianjin 300130, China.
J Agric Food Chem. 2014 Sep 3;62(35):8799-807. doi: 10.1021/jf503060k. Epub 2014 Aug 20.
On the basis of the structure of natural product (-)-incrustoporin (1), a series of lactone compounds 4a-i and 5a-i were designed and synthesized from nitroolefin. The antiviral and antifungal activities of these compounds were evaluated in vitro and in vivo. The small changes between 4 and 5 at the 3,4-position result in large differences in bioactivities. Compounds 4 exhibited significantly higher antiviral activity against tobacco mosaic virus (TMV) than dehydro compounds 5. However, the antifungal activity of 4 is relatively lower than that of 5. Compounds 4a, 4c, and 4i with excellent in vivo anti-TMV activity emerged as new antiviral lead compounds. Compounds 5d-g showed superiority over the commercial fungicides chlorothalonil and carbendazim against Cercospora arachidicola Hor at 50 mg kg(-1). The present study provides fundamental support for the development and optimization of (-)-incrustoporin derivatives as potential inhibitors of plant virus and pathogenic fungi.
基于天然产物(-)-硬壳孢菌素(1)的结构,从硝基烯烃设计并合成了一系列内酯化合物4a-i和5a-i。对这些化合物的抗病毒和抗真菌活性进行了体外和体内评估。4和5在3,4位的微小变化导致生物活性有很大差异。化合物4对烟草花叶病毒(TMV)的抗病毒活性明显高于脱氢化合物5。然而,4的抗真菌活性相对低于5。具有优异体内抗TMV活性的化合物4a、4c和4i成为新的抗病毒先导化合物。在50 mg kg(-1)时,化合物5d-g对花生尾孢菌的防治效果优于市售杀菌剂百菌清和多菌灵。本研究为开发和优化(-)-硬壳孢菌素衍生物作为植物病毒和致病真菌的潜在抑制剂提供了基础支持。