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拓展 Ajudazol 细胞毒素骨架:来自基因组挖掘、生物合成研究和新型衍生物的见解。

Expanding the Ajudazol Cytotoxin Scaffold: Insights from Genome Mining, Biosynthetic Investigations, and Novel Derivatives.

机构信息

Department of Microbial Natural Products, Helmholtz Institute for Pharmaceutical Research Saarland (HIPS), Helmholtz Centre for Infection Research and Department of Pharmacy, Saarland University, 66123 Saarbrücken, Saarland, Germany.

出版信息

J Nat Prod. 2022 Nov 25;85(11):2610-2619. doi: 10.1021/acs.jnatprod.2c00637. Epub 2022 Nov 4.

Abstract

Myxobacteria have proven to be a rich source of natural products, but their biosynthetic potential seems to be underexplored given the high number of biosynthetic gene clusters present in their genomes. In this study, a truncated ajudazol biosynthetic gene cluster in sp. SBCb004 was identified using mutagenesis and metabolomics analyses and a set of novel ajudazols (named ajudazols C-J, -, respectively) were detected and subsequently isolated. Their structures were elucidated using comprehensive HR-MS and NMR spectroscopy. Unlike the known ajudazols A () and B (), which utilize acetyl-CoA as the biosynthetic starter unit, these novel ajudazols were proposed to incorporate 3,3-dimethylacrylyl CoA as the starter. Ajudazols C-J (-, respectively) are characterized by varying degrees of hydroxylation, desaturation, and different glycosylation patterns. Two P450-dependent enzymes and one glycosyltransferase are shown to be responsible for the hydroxylation at C-8, the desaturation at C-15 and C-33, and the transfer of a d--glucopyranose, respectively, based on mutagenesis results. One of the cytochrome P450-dependent enzymes and the glycosyltransferase were found to be encoded by genes located outside the biosynthetic gene cluster. Ajudazols C-H (-, respectively) exhibit cytotoxicity against various cancer cell lines.

摘要

粘细菌已被证明是天然产物的丰富来源,但考虑到其基因组中存在大量生物合成基因簇,它们的生物合成潜力似乎尚未得到充分探索。在这项研究中,使用诱变和代谢组学分析鉴定了 sp. SBCb004 中的截断 ajudazol 生物合成基因簇,并检测到并随后分离出一组新型 ajudazols(分别命名为 ajudazols C-J,-)。它们的结构通过全面的高分辨质谱和 NMR 光谱学阐明。与已知的 ajudazols A () 和 B () 不同,它们利用乙酰辅酶 A 作为生物合成起始单元,这些新型 ajudazols 被提议采用 3,3-二甲基丙烯酰辅酶 A 作为起始单元。Ajudazols C-J (-, 分别) 的特征在于不同程度的羟基化、去饱和和不同的糖基化模式。根据诱变结果,两个 P450 依赖性酶和一个糖基转移酶被证明分别负责 C-8 位的羟基化、C-15 和 C-33 位的去饱和以及 d--葡萄糖的转移。发现其中一个细胞色素 P450 依赖性酶和糖基转移酶由位于生物合成基因簇之外的基因编码。Ajudazols C-H (-, 分别) 对各种癌细胞系表现出细胞毒性。

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