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Simplifungin and Valsafungins, Antifungal Antibiotics of Fungal Origin

机译:Simplifungin和Valsafungins,真菌来源的抗真菌抗生素

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摘要

The targets of antifungal antibiotics in clinical use are more limited than those of antibacterial antibiotics. Therefore, new antifungal antibiotics with different mechanisms of action are desired. In the course of our screening for antifungal antibiotics of microbial origins, new antifungal antibiotics, simplifungin (1) and valsafungins A (2) and B (3), were isolated from cultures of the fungal strains Simplicillium minatense FKI-4981 and Valsaceae sp. FKH-53, respectively. The structures of 1 to 3 including their absolute stereochemistries were elucidated using various spectral analyses including NMR and collision-induced dissociation (CID)-MS/MS as well as chemical approaches including modifications to the Mosher's method. They were structurally related to myriocin. They inhibited the growth of yeast-like and zygomycetous fungi with MICs ranging between 0.125 and 8.0 mu g/mL. An examination of their mechanisms of action by the newly established assay using LC-MS revealed that 1 and 2 inhibited serine palmitoyltransferase activity, which is involved in sphingolipid biosynthesis, with IC50 values of 224 and 24 nM, respectively.
机译:临床使用的抗真菌抗生素的目标比抗细菌抗生素的目标受到更多限制。因此,需要具有不同作用机理的新型抗真菌抗生素。在我们筛选微生物来源的抗真菌抗生素的过程中,从真菌Simplicillium minatense FKI-4981和Valsaceae sp。的培养物中分离出了新的抗真菌抗生素辛普利芬净(1)和缬沙芬素A(2)和B(3)。 FKH-53。使用包括NMR和碰撞诱导解离(CID)-MS / MS在内的各种光谱分析以及包括对Mosher方法的修改在内的化学方法,阐明了1至3的结构,包括其绝对的立体化学。它们在结构上与肉豆蔻酸有关。它们以0.125至8.0μg / mL的MIC抑制酵母样和合子菌真菌的生长。通过使用LC-MS的新近建立的测定法对其作用机理进行的检查表明,1和2抑制了丝氨酸棕榈酰转移酶的活性,该活性与鞘脂的生物合成有关,其IC50值分别为224和24 nM。

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