Kimishima Aoi, Honma Sota, Kimishima Atsushi, Nishitomi Atsuka, Honsho Masako, Wasuwanich Paul, Kojima Hiroki, Tokiwa Toshiyuki, Sugawara Akihiro, Araki Yasuko, Takahashi Tadashi, Chinen Takumi, Usui Takeo, Fuji Shin-Ichi, Ito Kotaro, Asami Yukihiro
Graduate School of Infection Control Sciences, Kitasato University.
Ōmura Satoshi Memorial Institute, Kitasato University.
J Pestic Sci. 2024 Nov 20;49(4):224-231. doi: 10.1584/jpestics.D24-035.
Our group previously identified MS-347a () as a new fungicide candidate from the culture broth of the mutant strain, sp. KTF-0058, which had the gene inserted. This mutant strain was able to produce a sufficient supply of , allowing for its use to investigate the structure-activity relationship. To this end, we synthesized 11 derivatives and evaluated their antifungal activity. Among these derivatives, the aldehyde derivative exhibited superior antifungal potency as compared to , and some acyl derivatives were able to maintain the antifungal activity of despite significant structural changes. From these results, it is found that the aldehyde derivative is one of the most promising fungicidal candidates, and the introduction of acyl groups could be utilized to create chemical probes for target-identification experiments.
我们小组之前从插入了基因的突变菌株KTF - 0058的培养液中鉴定出MS - 347a()作为一种新的杀菌剂候选物。该突变菌株能够产生足够量的,从而可用于研究构效关系。为此,我们合成了11种衍生物并评估了它们的抗真菌活性。在这些衍生物中,醛衍生物与相比表现出更强的抗真菌效力,并且一些酰基衍生物尽管结构发生了显著变化仍能保持的抗真菌活性。从这些结果可以发现,醛衍生物是最有前景的杀菌剂候选物之一,引入酰基可用于创建用于靶点鉴定实验的化学探针。