Texas Therapeutics Institute, the Brown Foundation Institute of Molecular Medicine, University of Texas Health Science Center at Houston, Houston, TX, USA.
Leibniz University Hannover, Institute for Organic Chemistry and BMWZ, Hannover, Germany.
Environ Microbiol. 2018 Sep;20(9):3325-3342. doi: 10.1111/1462-2920.14333. Epub 2018 Sep 13.
Enfumafungin is a glycosylated fernene-type triterpenoid produced by the fungus Hormonema carpetanum. Its potent antifungal activity, mediated by its interaction with β-1,3-glucan synthase and the fungal cell wall, has led to its development into the semi-synthetic clinical candidate, ibrexafungerp (=SCY-078). We report on the preliminary identification of the enfumafungin biosynthetic gene cluster (BGC) based on genome sequencing, phylogenetic reconstruction, gene disruption, and cDNA sequencing studies. Enfumafungin synthase (efuA) consists of a terpene cyclase domain (TC) fused to a glycosyltransferase (GT) domain and thus represents a novel multifunctional enzyme. Moreover, the TC domain bears a phylogenetic relationship to bacterial squalene-hopene cyclases (SHC) and includes a typical DXDD motif within the active centre suggesting that efuA evolved from SHCs. Phylogenetic reconstruction of the GT domain indicated that this portion of the fusion gene originated from fungal sterol GTs. Eleven genes flanking efuA are putatively involved in the biosynthesis, regulation, transport and self-resistance of enfumafungin and include an acetyltransferase, three P450 monooxygenases, a dehydrogenase, a desaturase and a reductase. A hypothetical scheme for enfumafungin assembly is proposed in which the E-ring is oxidatively cleaved to yield the four-ring system of enfumafungin. EfuA represents the first member of a widespread lineage of fungal SHCs.
恩夫霉素是一种由真菌霍氏曲霉产生的糖基化蕨烯型三萜类化合物。其通过与β-1,3-葡聚糖合酶和真菌细胞壁相互作用发挥强大的抗真菌活性,这导致其被开发为半合成临床候选药物伊布列康唑 (=SCY-078)。我们根据基因组测序、系统发育重建、基因敲除和 cDNA 测序研究,报告了恩夫霉素生物合成基因簇 (BGC) 的初步鉴定。恩夫霉素合酶 (efuA) 由萜烯环化酶结构域 (TC) 与糖基转移酶 (GT) 结构域融合而成,因此代表了一种新型多功能酶。此外,TC 结构域与细菌角鲨烯-鲨烯环化酶 (SHC) 具有系统发育关系,并在活性中心包含典型的 DXDD 基序,表明 efuA 是从 SHC 进化而来的。GT 结构域的系统发育重建表明,该融合基因的这一部分源自真菌固醇 GTs。efuA 侧翼的 11 个基因可能参与恩夫霉素的生物合成、调控、运输和自身抗性,包括乙酰基转移酶、三个 P450 单加氧酶、脱氢酶、去饱和酶和还原酶。提出了恩夫霉素组装的假设方案,其中 E 环被氧化裂解生成恩夫霉素的四环系统。EfuA 代表真菌 SHC 广泛谱系中的第一个成员。