Institute for Organic Chemistry and BMWZ, Leibniz University of Hannover, Schneiderberg 38, 30167, Hannover, Germany.
Department Microbial Drugs, Helmholtz Centre for Infection Research, Bldg. B, Room 175a, Inhoffenstrasse 7, 38124, Braunschweig, Germany.
Chemistry. 2020 Oct 27;26(60):13578-13583. doi: 10.1002/chem.202002241. Epub 2020 Sep 17.
Mutasynthesis of pyrichalasin H from Magnaporthe grisea NI980 yielded a series of unprecedented 4'-substituted cytochalasin analogues in titres as high as the wild-type system (≈60 mg L ). Halogenated, O-alkyl, O-allyl and O-propargyl examples were formed, as well as a 4'-azido analogue. 4'-O-Propargyl and 4'-azido analogues reacted smoothly in Huisgen cycloaddition reactions, whereas p-Br and p-I compounds reacted in Pd-catalysed cross-coupling reactions. A series of examples of biotin-linked, dye-linked and dimeric cytochalasins was rapidly created. In vitro and in vivo bioassays of these compounds showed that the 4'-halogenated and azido derivatives retained their cytotoxicity and antifungal activities; but a unique 4'-amino analogue was inactive. Attachment of larger substituents attenuated the bioactivities. In vivo actin-binding studies with adherent mammalian cells showed that actin remains the likely intracellular target. Dye-linked compounds revealed visualisation of intracellular actin structures even in the absence of phalloidin, thus constituting a potential new class of actin-visualisation tools with filament-barbed end-binding specificity.
从稻瘟病菌 NI980 中进行突变合成吡里恰尔辛 H,得到了一系列前所未有的 4'-取代细胞松弛素类似物,其产量与野生型系统相当(约 60mg/L)。形成了卤代、O-烷基、O-烯丙基和 O-炔丙基的类似物,以及 4'-叠氮类似物。4'-O-炔丙基和 4'-叠氮类似物在 Huisgen 环加成反应中反应顺利,而 p-Br 和 p-I 化合物在 Pd 催化的交叉偶联反应中反应。一系列生物素连接、染料连接和二聚细胞松弛素的例子被迅速创造出来。这些化合物的体外和体内生物测定表明,4'-卤代和叠氮衍生物保留了它们的细胞毒性和抗真菌活性;但独特的 4'-氨基类似物没有活性。较大取代基的附着减弱了生物活性。与贴壁哺乳动物细胞进行的体内肌动蛋白结合研究表明,肌动蛋白仍然是可能的细胞内靶标。染料连接的化合物甚至在没有鬼笔环肽的情况下也能显示细胞内肌动蛋白结构,因此构成了一类具有丝状体尖端结合特异性的潜在新型肌动蛋白可视化工具。