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当前和未来分析单端孢霉烯族毒素结构的实验策略——展望。

Current and future experimental strategies for structural analysis of trichothecene mycotoxins--a prospectus.

机构信息

Agriculture and Agri-Food Canada, 5403 1 Ave S, Lethbridge, AB T1J 4B1, Canada.

出版信息

Toxins (Basel). 2011 Dec;3(12):1518-53. doi: 10.3390/toxins3121518. Epub 2011 Dec 19.

Abstract

Fungal toxins, such as those produced by members of the order Hypocreales, have widespread effects on cereal crops, resulting in yield losses and the potential for severe disease and mortality in humans and livestock. Among the most toxic are the trichothecenes. Trichothecenes have various detrimental effects on eukaryotic cells including an interference with protein production and the disruption of nucleic acid synthesis. However, these toxins can have a wide range of toxicity depending on the system. Major differences in the phytotoxicity and cytotoxicity of these mycotoxins are observed for individual members of the class, and variations in toxicity are observed among different species for each individual compound. Furthermore, while diverse toxicological effects are observed throughout the whole cellular system upon trichothecene exposure, the mechanism of toxicity is not well understood. In order to comprehend how these toxins interact with the cell, we must first have an advanced understanding of their structure and dynamics. The structural analysis of trichothecenes was a subject of major interest in the 1980s, and primarily focused on crystallographic and solution-state Nuclear Magnetic Resonance (NMR) spectroscopic studies. Recent advances in structural determination through solution- and solid-state NMR, as well as computation based molecular modeling is leading to a resurgent interest in the structure of these and other mycotoxins, with the focus shifting in the direction of structural dynamics. The purpose of this work is to first provide a brief overview of the structural data available on trichothecenes and a characterization of the methods commonly employed to obtain such information. A summary of the current understanding of the relationship between structure and known function of these compounds is also presented. Finally, a prospectus on the application of new emerging structural methods on these and other related systems is discussed.

摘要

真菌毒素,如那些由 Hypocreales 目成员产生的毒素,对谷类作物有广泛的影响,导致产量损失,并有可能在人类和牲畜中引发严重疾病和死亡。其中最毒的是三萜烯。三萜烯对真核细胞有各种有害影响,包括干扰蛋白质的产生和破坏核酸的合成。然而,这些毒素的毒性因系统而异。在类中,个别成员观察到这些真菌毒素的植物毒性和细胞毒性有很大差异,并且对于每种单独的化合物,不同物种之间也观察到毒性的变化。此外,虽然在三萜烯暴露后整个细胞系统中观察到多样化的毒理学效应,但毒性机制尚未得到很好的理解。为了理解这些毒素如何与细胞相互作用,我们必须首先对它们的结构和动态有一个深入的了解。三萜烯的结构分析在 20 世纪 80 年代是一个主要的研究课题,主要集中在晶体学和溶液状态下的核磁共振(NMR)光谱研究上。近年来,通过溶液和固态 NMR 以及基于计算的分子建模进行结构测定的进展,导致人们对这些和其他真菌毒素的结构重新产生了兴趣,研究重点转向结构动力学。这项工作的目的首先是简要概述三萜烯的结构数据,并对获得这些信息的常用方法进行描述。还总结了目前对这些化合物的结构与已知功能之间关系的理解。最后,讨论了在这些和其他相关系统中应用新出现的结构方法的前景。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/6691/3268455/aaedfe87e580/toxins-03-01518-g001.jpg

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