Isolation and characterization of three pairs of verrucosidin epimers from the marine sediment-derived fungus Penicillium cyclopium and configuration revision of penicyrone A and related analogues.

IF 5.8 2区 生物学 Q1 MARINE & FRESHWATER BIOLOGY Marine Life Science & Technology Pub Date : 2023-05-28 eCollection Date: 2023-05-01 DOI:10.1007/s42995-023-00173-2
Yan-He Li, Attila Mándi, Hong-Lei Li, Xiao-Ming Li, Xin Li, Ling-Hong Meng, Sui-Qun Yang, Xiao-Shan Shi, Tibor Kurtán, Bin-Gui Wang
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Abstract

Verrucosidins, a methylated α-pyrone class of polyketides rarely reported upon, have been implicated in one or more neurological diseases. Despite the significance of verrucosidins as neurotoxins, the absolute configurations of most of the derivatives have not been accurately characterized yet. In this study, three pairs of C-9 epimeric verrucosidin derivatives, including the known compounds penicyrones A and B (1a/1b) and 9-O-methylpenicyrones A and B (2a/2b), the new compounds 9-O-ethylpenicyrones A and B (3a/3b), together with the related known derivative verrucosidin (4), were isolated and identified from the culture extract of Penicillium cyclopium SD-413, which was obtained from the marine sediment collected from the East China sea. Their structures were established based on an in-depth analysis of nuclear magnetic resonances (NMR) and mass spectroscopic data. Determination of the absolute configurations of these compounds was accomplished by Mosher's method and time-dependent density functional theory (TDDFT) calculations of electronic circular dichroism (ECD) and optical rotation (OR). The configurational assignment of penicyrone A demonstrated that the previously reported C-6 absolute configuration of verrucosidin derivatives needs to be revised from (6S) to (6R). The 9R/9S epimers of compounds 1-3 were found to exhibit growth inhibition against some pathogenic bacteria, indicating that they have potential as lead compounds for the creation of antimicrobial agents.

Supplementary information: The online version contains supplementary material available at 10.1007/s42995-023-00173-2.

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从海洋沉积物来源的真菌环青霉中分离、鉴定三对疣苷差向异构体,并对青霉烯酮A及其类似物进行结构修饰。
Verrucosidins是一种甲基化α-吡喃酮类聚酮,很少报道,与一种或多种神经系统疾病有关。尽管疣苷作为神经毒素具有重要意义,但大多数衍生物的绝对构型尚未得到准确表征。在本研究中,从环青霉SD-413的培养提取物中分离并鉴定了三对C-9差向异构疣苷衍生物,包括已知的化合物青霉烯A和B(1a/1b)和9-O-甲基青霉烯A、B(2a/2b),新的化合物9-O-乙基青霉烯A与B(3a/3b),以及相关的已知衍生物疣苷(4),它是从东海采集的海洋沉积物中获得的。它们的结构是基于对核磁共振(NMR)和质谱数据的深入分析而建立的。这些化合物的绝对构型的测定是通过Mosher方法和电子圆二色性(ECD)和旋光度(OR)的时间依赖密度泛函理论(TDDFT)计算完成的。阴茎酮A的构型分配表明,先前报道的疣苷衍生物的C-6绝对构型需要从(6S)修改为(6R)。发现化合物1-3的9R/9S差向异构体对一些病原菌表现出生长抑制,表明它们具有作为抗微生物剂的先导化合物的潜力。补充信息:在线版本包含补充材料,可访问10.1007/s42995-023-00173-2。
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来源期刊
Marine Life Science & Technology
Marine Life Science & Technology MARINE & FRESHWATER BIOLOGY-
CiteScore
9.60
自引率
10.50%
发文量
58
期刊介绍: Marine Life Science & Technology (MLST), established in 2019, is dedicated to publishing original research papers that unveil new discoveries and theories spanning a wide spectrum of life sciences and technologies. This includes fundamental biology, fisheries science and technology, medicinal bioresources, food science, biotechnology, ecology, and environmental biology, with a particular focus on marine habitats. The journal is committed to nurturing synergistic interactions among these diverse disciplines, striving to advance multidisciplinary approaches within the scientific field. It caters to a readership comprising biological scientists, aquaculture researchers, marine technologists, biological oceanographers, and ecologists.
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