Key Laboratory of Tropical Biological Resources of Ministry of Education, School of Pharmaceutical Sciences, Hainan University, Haikou, 570228, PR China; Center of Scientific Research and Experiment, Nanyang Medical College, Nanyang, 473061, PR China; School of Pharmacy, Henan University, Kaifeng, 475004, PR China.
Central Laboratory, the First Affiliated Hospital, Fujian Medical University, Fuzhou, 350005, PR China.
Phytochemistry. 2024 Sep;225:114202. doi: 10.1016/j.phytochem.2024.114202. Epub 2024 Jun 27.
The genus Penicillium has provided us with the household antibiotic penicillin and the well-known lipid-lowering agent mevastatin. The strain Penicillium sp. SZ-1 was found to grow vigorously in an intact Pinus koraiensis seed, it is inferred that the strain may develop unique mechanisms associated with the biosynthesis of rare metabolites. Further fermentation of the strain on solid rice medium yielded thirteen undescribed compounds, including three andrastin-type meroterpenoids (1-3), two α-pyrone polyketides (4 and 5), and eight sesquicarane derivatives (6-13), along with seven known compounds (14-20). Their structures were determined by detailed analysis of the spectroscopic and spectrometric data (NMR and HRESIMS), in addition to comparisons of the experimental and calculated ECD data for absolute configurational assignments. The hemiacetal moiety in compounds 1 and 2 and the 3α-hydroxy group in compound 3 were rarely found in the andrastin-type meroterpenoid family. The sesquicaranes belong to a small group of sesquiterpenoid that are rarely reported. Bioassay study showed that compound 1 exhibited inhibitory effects against Staphylococcus aureus ATCC 29213 and Escherichia coli ATCC 25922 with MIC values of 64 and 32 μg/mL, respectively. In addition, compounds 1 and 3 displayed weak DPPH radical scavenging activities. The andrastins and sesquicaranes in this study enriched the structural diversity of these classes of terpenoids. Of note, this study is the first report on the metabolites of a fungus isolated from P. koraiensis seed.
青霉属为我们提供了家用抗生素青霉素和著名的降脂药美伐他汀。发现菌株青霉 sp. SZ-1 在完整的红松种子中生长旺盛,推断该菌株可能具有与稀有代谢产物生物合成相关的独特机制。进一步在固体大米培养基上发酵该菌株得到了 13 种未描述的化合物,包括 3 种安特拉丁型倍半萜(1-3)、2 种α-吡喃酮聚酮(4 和 5)和 8 种倍半蒈烷衍生物(6-13),以及 7 种已知化合物(14-20)。通过详细分析光谱和光谱数据(NMR 和 HRESIMS)以及比较实验和计算 ECD 数据来确定它们的结构,以确定绝对构型分配。化合物 1 和 2 中的半缩醛部分和化合物 3 中的 3α-羟基在安特拉丁型倍半萜家族中很少见。倍半蒈烷属于报道较少的一小类倍半萜。生物测定研究表明,化合物 1 对金黄色葡萄球菌 ATCC 29213 和大肠杆菌 ATCC 25922 表现出抑制作用,MIC 值分别为 64 和 32μg/mL。此外,化合物 1 和 3 对 DPPH 自由基具有较弱的清除活性。本研究中的安特拉丁和倍半蒈烷丰富了这些萜类化合物的结构多样性。值得注意的是,这是首次报道从红松种子中分离出的真菌代谢产物。