首页> 美国卫生研究院文献>International Journal of Molecular Sciences >In-Depth Glyco-Peptidomics Approach Reveals Unexpected Diversity of Glycosylated Peptides and Atypical Post-Translational Modifications in Dendroaspis angusticeps Snake Venom
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In-Depth Glyco-Peptidomics Approach Reveals Unexpected Diversity of Glycosylated Peptides and Atypical Post-Translational Modifications in Dendroaspis angusticeps Snake Venom

机译:深入的糖肽组学方法揭示了意外的糖基化肽多样性和非典型翻译后修饰的蛇毒蛇毒

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摘要

Animal venoms represent a valuable source of bioactive peptides that can be derived into useful pharmacological tools, or even innovative drugs. In this way, the venom of Dendroaspis angusticeps (DA), the Eastern Green Mamba, has been intensively studied during recent years. It mainly contains hundreds of large toxins from 6 to 9 kDa, each displaying several disulfide bridges. These toxins are the main target of venom-based studies due to their valuable activities obtained by selectively targeting membrane receptors, such as ion channels or G-protein coupled receptors. This study aims to demonstrate that the knowledge of venom composition is still limited and that animal venoms contain unexpected diversity and surprises. A previous study has shown that Dendroaspis angusticeps venom contains not only a cocktail of classical toxins, but also small glycosylated peptides. Following this work, a deep exploration of DA glycopeptidome by a dual nano liquid chromatography coupled to electrospray ionization mass spectrometry (nanoLC-ESI-MS) and Matrix-assisted laser desorption/ionization time of flight mass spectrometry (MALDI-TOF-MS) analyses was initiated. This study reveals unsuspected structural diversity of compounds such as 221 glycopeptides, displaying different glycan structures. Sequence alignments underline structural similarities with natriuretic peptides already characterized in Elapidae venoms. Finally, the presence of an S-cysteinylation and hydroxylation of proline on four glycopeptides, never described to date in snake venoms, is also revealed by proteomics and affined by nuclear magnetic resonance (NMR) experiments.
机译:动物毒液是生物活性肽的宝贵来源,可以被转化为有用的药理学工具甚至是创新药物。通过这种方式,近年来对东方绿曼巴蛇(Dendroaspis angusticeps,DA)的毒液进行了深入研究。它主要包含数百种6至9 kDa的大毒素,每种毒素都显示多个二硫键。这些毒素是基于毒液的研究的主要目标,因为它们通过选择性靶向膜受体(例如离子通道或G蛋白偶联受体)获得了有价值的活性。这项研究旨在证明毒液成分的知识仍然有限,并且动物毒液具有意想不到的多样性和惊喜。先前的研究表明,Dendroaspis angusticeps毒液不仅包含经典毒素的混合物,而且还包含小的糖基化肽。完成这项工作后,通过双纳米液相色谱与电喷雾电离质谱(nanoLC-ESI-MS)和基质辅助激光解吸/电离飞行时间质谱(MALDI-TOF-MS)分析,对DA糖肽组进行了深入研究开始了。这项研究揭示了诸如221种糖肽之类化合物的意想不到的结构多样性,表现出不同的聚糖结构。序列比对强调了与已经在天蝎座毒液中表征的利钠肽的结构相似性。最后,蛋白质组学也揭示了四个糖肽上脯氨酸的S-半胱氨酸化和羟基化(迄今为止尚未在蛇毒中进行描述),蛋白质组学也揭示了这种现象,并且核磁共振(NMR)实验也证实了这一点。

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