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黄曲霉 Asperflavipine A:一种细胞松弛素杂四聚体,由黄曲霉 QCS12 中独特的高度复杂十四环体系定义。

Asperflavipine A: A Cytochalasan Heterotetramer Uniquely Defined by a Highly Complex Tetradecacyclic Ring System from Aspergillus flavipes QCS12.

机构信息

Hubei Key Laboratory of Natural Medicinal Chemistry and Resource Evaluation, School of Pharmacy, Tongji Medical College, Huazhong University of Science and Technology, Wuhan, 430030, China.

State Key Laboratory of Phytochemistry and Plant Resources in West China, Kunming Institute of Botany, Chinese Academy of Sciences, Kunming, 650204, China.

出版信息

Angew Chem Int Ed Engl. 2017 May 2;56(19):5242-5246. doi: 10.1002/anie.201701125. Epub 2017 Apr 5.

Abstract

Asperflavipines A (1) and B (2), two structurally complex merocytochalasans, were isolated from Aspergillus flavipes. Asperflavipine A (1), which contains two cytochalasan moieties and two epicoccine moieties, is the first cytochalasan heterotetramer to be discovered. It is uniquely defined by 5/6/11/5/6/5/6/5/6/5/5/11/6/5 fused tetradecacyclic rings with three continuous bridged ring systems. Asperflavipine B (2) is a cytochalasan heterotrimer containing a cytochalasan and two epicoccine moieties with a 5/6/11/5/5/6/5/6/5 nonacyclic ring system. The hypothetical biosynthesis of 1 and 2 is proposed to involve Diels-Alder and [3+2] cycloaddition reactions as key steps and reveals unparalleled plasticity in the biosynthesis of merocytochalasans. The existence of 1 adds a new dimension to the diversity of the cytochalasan family. Compound 1 showed moderate cytotoxicity and induced apoptosis in Jurkat, NB4, and HL60 cells through the activation of caspase-3 and degradation of poly(ADP-ribose) polymerase (PARP).

摘要

从黄曲霉中分离得到了两种结构复杂的麦角甾酮类化合物 Asperflavipines A (1) 和 B (2)。Asperflavipine A (1) 含有两个细胞松弛素部分和两个麦角甾酮部分,是第一个被发现的细胞松弛素杂四聚体。它的独特之处在于具有 5/6/11/5/6/5/6/5/6/5/5/11/6/5 融合的十四元环和三个连续的桥环系统。Asperflavipine B (2) 是一种细胞松弛素杂三聚体,含有一个细胞松弛素和两个麦角甾酮部分,具有 5/6/11/5/5/6/5/6/5 非环体系。提出了 1 和 2 的假设生物合成途径涉及 Diels-Alder 和 [3+2] 环加成反应作为关键步骤,揭示了麦角甾酮类化合物生物合成的无与伦比的可塑性。1 的存在为细胞松弛素家族的多样性增添了新的维度。化合物 1 通过激活 caspase-3 和降解聚(ADP-核糖)聚合酶 (PARP),在 Jurkat、NB4 和 HL60 细胞中表现出中等的细胞毒性,并诱导细胞凋亡。

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