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6/5/6/5 四环瓜蟾肽酸的起源。

Origin of the 6/5/6/5 Tetracyclic Cyclopiazonic Acids.

机构信息

Ocean College, Zhejiang University, Zhoushan 316021, China.

Hainan Institute of Zhejiang University, Sanya 572025, China.

出版信息

Mar Drugs. 2024 Jan 31;22(2):74. doi: 10.3390/md22020074.

Abstract

The natural product α-cyclopiazonic acid (α-CPA) is a very potent Ca-ATPase inhibitor. The CPA family of compounds comprise over 80 chemical entities with at least five distinct skeletons. While α-CPA features a canonical 6/5/6/5/5 skeleton, the 6/5/6/5 skeleton is the most prevalent among the CPA family. However, the origin of the unique tetracyclic skeleton remains unknown. The 6/5/6/5-type CPAs may derive from a precursor of acetoacetyl-l-tryptophan (AATrp) generated from a hypothetic thioesterase-like pathway. Alternatively, cleavage of the tetramic acid ring would also result in the formation of the 6/5/6/5 scaffold. HMP-F28 is a marine sponge-associated filamentous fungus known to produce CPAs that act as primary neurotoxins. To elucidate the origin of this subfamily of CPAs, we performed homologous recombination and genetic engineering experiments on strain HMP-F28. Our results are supportive of the ring cleavage pathway through which the tetracyclic 6/5/6/5-type CPAs are generated from 6/5/6/5/5-type pentacyclic CPAs.

摘要

天然产物α-环匹阿尼酸(α-CPA)是一种非常有效的 Ca-ATP 酶抑制剂。CPA 化合物家族由至少 5 种不同骨架的 80 多种化学实体组成。虽然 α-CPA 具有典型的 6/5/6/5/5 骨架,但 6/5/6/5 骨架是 CPA 家族中最常见的骨架。然而,独特的四环骨架的起源仍然未知。6/5/6/5 型 CPAs 可能来源于乙酰乙酰-l-色氨酸(AATrp)的前体,该前体由假设的硫酯酶样途径产生。或者,四氢酸环的裂解也会导致 6/5/6/5 支架的形成。HMP-F28 是一种与海洋海绵相关的丝状真菌,已知能产生作为主要神经毒素的 CPAs。为了阐明这种 CPA 亚家族的起源,我们对 HMP-F28 菌株进行了同源重组和遗传工程实验。我们的结果支持通过环裂解途径生成四环 6/5/6/5 型 CPAs 是从五环 6/5/6/5/5 型 CPAs 衍生而来的。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/901e/10890092/4779476a770d/marinedrugs-22-00074-g001.jpg

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