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◆ Microorganisms2026-07-30

Verrucones A-H, Non-Acetate Starter Aromatic Polyketides Discovered by Heterologous Expression of a Type II PKS Gene Cluster.

Xingkun Hao, Ming Yang, Ping Yan, Qiyao Shen, Yang Liu, Youming Zhang, Xiaoying Bian, Haibo Zhou

原始摘要(英文原文)· Original abstract
Genome mining of the marine-derived Streptomyces sp. S42 uncovered a type II polyketide synthetase (T2 PKS) biosynthetic gene cluster (BGC) harboring a gene for 3-ketoacyl-ACP synthase III (KAS III), a hallmark of non-acetate starter unit incorporation, suggesting that the BGC may produce previously unidentified aromatic polyketides. Heterologous expression and promoter engineering of this prioritized BGC in host Streptomyces albus J1074 activated the biosynthetic pathway, leading to the isolation of eight new polycyclic aromatic derivatives, verrucones A-H (1-8). Comprehensive structural elucidation via NMR and HRESIMS revealed that these compounds feature either a 2-methylbutyryl or an isobutyryl starter unit and can be classified into three distinct skeletal types. Based on these findings and bioinformatic analysis, a plausible biosynthetic pathway for 1-8 involving divergent spontaneous cyclization from a common nascent polyketide intermediate was proposed. Among the isolated compounds, 1-5 exhibited inhibitory activity against several protein tyrosine phosphatases (PTPs) with IC50 values ranging from 1.84 μM to 24.82 μM. This study presents a successful case study demonstrating that combining KAS III-targeted genome mining with heterologous expression is a viable approach for discovering non-acetate-primed aromatic polyketides.
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Verrucones A-H, Non-Acetate Starter Aromatic Polyketides Discovered by Heterologous Expression of a Type II PKS Gene Cluster. — 科研速览 Science Skim