A gene cluster encoding a nonribosomal peptide synthetase-like enzyme catalyzes γ-aromatic butenolides

非核糖体肽 基因簇 立体化学 化学 基因组 拉伤 基因 环肽 生物化学 生物 生物合成 解剖
作者
Qing-Zhou Meng,Xinzhu Wang,Huanqin Dai,Israa Assani,Mengting Zhang,Peipei Zhao,Long-Fen Li,Xin Yin,Jun Qi,Yang Pan,Lixin Zhang,Xuekui Xia
出处
期刊:Journal of Asian Natural Products Research [Taylor & Francis]
卷期号:26 (6): 681-689
标识
DOI:10.1080/10286020.2024.2311150
摘要

Sea cucumber-derived fungi have attracted much attention due to their capacity to produce an incredible variety of secondary metabolites. Genome-wide information on Aspergillus micronesiensis H39 obtained using third-generation sequencing technology (PacBio-SMRT) showed that the strain contains nonribosomal peptide synthetase (NRPS)-like gene clusters, which aroused our interest in mining its secondary metabolites. 11 known compounds (1–11), including two γ-aromatic butenolides (γ-AB) and five cytochalasans, were isolated from A. micronesiensis H39. The structures of the compounds were determined by NMR and ESIMS, and comparison with those reported in the literature. From the perspective of biogenetic origins, the γ-butyrolactone core of compounds 1 and 2 was assembled by NRPS-like enzyme. All of the obtained compounds showed no inhibitory activity against drug-resistant bacteria and fungi, as well as compounds 1 and 2 had no anti-angiogenic activity against zebrafish.
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