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海百合:古老生物,现代化学。

Crinoids: ancient organisms, modern chemistry.

机构信息

Griffith Institute for Drug Discovery, Griffith University, Brisbane, QLD 4111, Australia.

出版信息

Nat Prod Rep. 2017 Jun 7;34(6):571-584. doi: 10.1039/c6np00093b.

Abstract

Covering: 1877 to 2017The ancestors of present-day crinoids are thought to be some of the earliest echinoderms, with fossil records dating back to the early Paleozoic Era (Ordovician Period, 505-440 million years ago). Their bright colours have been noted for over 100 years, and are attributed to a series of polyketide-derived pigments. Some crinoid metabolites display a range of biological activities, including cytotoxicity and fish anti-feedant activity. This review is divided into two parts. Part 1 is encyclopedic in scope, collating information on the >50 known metabolites isolated from crinoids, including their taxonomic source, collection location, chemical structure and biological activities. During the compilation of this data, two distinct themes emerged. Firstly, there is little variation in the class of metabolites produced by crinoids, irrespective of their species or geographic origin. Secondly, the complete and unambiguous assignment of crinoid metabolite structures has been, in many cases, a difficult task. This has been due to a lack of spectroscopic technology available in the past, the presence of proton-poor chemical structures, or both. Thus, Part 2 provides a critical discussion of crinoid chemistry, including the biosynthetic origin of crinoid pigments, as well as the pitfalls and solutions experienced by ourselves and other chemists when elucidating the chemical structures of crinoid metabolites.

摘要

涵盖范围

1877 年至 2017 年

现生海百合类的祖先被认为是最早的棘皮动物之一,其化石记录可以追溯到古生代早期(奥陶纪,5.05-4.40 亿年前)。人们已经注意到它们的鲜艳色彩超过 100 年了,这些色彩归因于一系列聚酮衍生的色素。一些海百合类代谢物具有多种生物活性,包括细胞毒性和鱼类拒食活性。本综述分为两部分。第一部分内容全面,整理了 50 多种已知海百合类代谢物的信息,包括它们的分类来源、采集地点、化学结构和生物活性。在收集这些数据的过程中,出现了两个明显的主题。首先,无论海百合类的物种或地理来源如何,它们产生的代谢物种类都很少有变化。其次,在许多情况下,完全且明确地分配海百合类代谢物的结构是一项艰巨的任务。这是由于过去缺乏光谱技术,质子贫乏的化学结构,或两者兼而有之。因此,第二部分批判性地讨论了海百合类化学,包括海百合类色素的生物合成起源,以及我们自己和其他化学家在阐明海百合类代谢物化学结构时遇到的陷阱和解决方案。

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