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首页> 外文期刊>Toxicon: An International Journal Devoted to the Exchange of Knowledge on the Poisons Derived from Animals, Plants and Microorganisms >Mass spectrometry strategies for venom mapping and peptide sequencing from crude venoms: Case applications with single arthropod specimen
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Mass spectrometry strategies for venom mapping and peptide sequencing from crude venoms: Case applications with single arthropod specimen

机译:用于从粗毒液中进行毒液定位和肽测序的质谱策略:单个节肢动物标本的案例应用

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摘要

Due to their complexity and diversity, animal venoms represent an extensive source of bioactive compounds such as peptides and proteins. Conventional approaches for their characterization often require large quantities of biological material. Current mass spectrometry (MS) techniques now give access to a wealth of information in a short working time frame with minute amounts of sample. Such MS approaches may now be used for the discovery of novel compounds, and once their structure has been determined they may be synthesized and tested for functional activity. Molecular mass fingerprints of venoms allow the rapid identification of known toxins as well as preliminary structural characterization of new compounds. De novo peptide sequencing by tandem mass spectrometry (MS/MS) offers rapid access to partial or total primary peptide structures. This article, written as a tutorial, also contains new material: molecular mass fingerprint analysis of Orthochirus innesi scorpion venom, and identification of components from bumblebee Bombus lapidarius venom, both collected from one single specimen. The structure of the three major peptides detected in the Bombus venom was fully characterized in one working day by de novo sequencing using an electrospray ionization hybrid quadrupole time-of-flight instrument (ESI-QqTOF) and a matrix-assisted laser desorption ionization time-of-flight instrument (MALDI-LIFT-TOF-TOF). After presenting the MS-based sequence elucidation, perspectives in using MS and MS/MS techniques in toxinology are discussed.
机译:由于其复杂性和多样性,动物毒液是生物活性化合物(如肽和蛋白质)的广泛来源。传统的表征方法通常需要大量的生物材料。现在,当前的质谱(MS)技术可在短工作时间内以极少量的样品获得大量信息。现在可以将此类MS方法用于发现新化合物,并且一旦确定了它们的结构,就可以合成它们并测试其功能活性。毒液的分子质量指纹图谱可快速识别已知毒素以及新化合物的初步结构特征。通过串联质谱(MS / MS)从头进行肽测序可快速访问部分或全部一级肽结构。本文以教程的形式撰写,还包含了新的材料:对印度支睾吸虫(Orthochirus innesi)蝎毒的分子指纹分析,以及从大黄蜂Bombus lapidarius毒液中鉴定出的成分,二者均从一个标本中收集。在一个工作日内,使用电喷雾电离混合四极杆飞行时间仪器(ESI-QqTOF)和基质辅助激光解吸电离时间从头进行了测序,从而全面表征了在孟买蛇毒中检测到的三种主要肽的结构飞行器(MALDI-LIFT-TOF-TOF)。在介绍了基于MS的序列后,讨论了在毒素学中使用MS和MS / MS技术的观点。

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