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首页> 外文期刊>Journal of proteome research >Uncovering Intense Protein Diversification in a Cone Snail Venom Gland Using an Integrative Venomics Approach
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Uncovering Intense Protein Diversification in a Cone Snail Venom Gland Using an Integrative Venomics Approach

机译:使用集成的Venomics方法在锥蜗牛毒腺中发现强烈的蛋白质多样性

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摘要

Marine cone snail venoms are highly complex mixtures of peptides and proteins. They have been studied in-depth over the past 3 decades, but the modus operandi of the venomous apparatus still remains unclear. Using the fish-hunting Conus consors as a model, we present an integrative venomics approach, based on new proteomic results from the venom gland and data previously obtained from the transcriptome and the injectable venom. We describe here the complete peptide content of the dissected venom by the identification of numerous new peptides using nanospray tandem mass spectrometry in combination with transcriptomic data. Results reveal extensive mature peptide diversification mechanisms at work in the venom gland. In addition, by integrating data from three different venom stages, transcriptome, dissected, and injectable venoms, from a single species, we obtain a global overview of the venom processing that occurs from the venom gland tissue to the venom delivery step. In the light of the successive steps in this venom production system, we demonstrate that each venom compartment is highly specific in terms of peptide and protein content. Moreover, the integrated investigative approach discussed here could become an essential part of pharmaceutical development, as it provides new potential drug candidates and opens the door to numerous analogues generated by the very mechanisms used by nature to diversify its peptide and protein arsenal.
机译:海洋锥蜗牛毒液是肽和蛋白质的高度复杂的混合物。在过去的30年中,对它们进行了深入的研究,但对有毒器械的作案手法仍不清楚。使用以猎鱼为目的的Conus cons作为模型,我们基于蛇毒腺的新蛋白质组学结果以及先前从转录组和可注射毒液获得的数据,提出了一种综合的经济学方法。我们在这里通过使用纳米喷雾串联质谱结合转录组学数据鉴定众多新肽,描述了解剖毒液的完整肽含量。结果揭示了在毒腺中广泛的成熟肽多样化机制。此外,通过整合来自单个物种的三个不同毒液阶段(转录组,解剖的和可注射毒液)的数据,我们获得了从毒液腺组织到毒液输送步骤发生的毒液加工的整体概览。根据该毒液生产系统中的后续步骤,我们证明了每个毒液区隔在肽和蛋白质含量方面都是高度特异性的。此外,这里讨论的综合研究方法可能会成为药物开发的重要组成部分,因为它提供了新的潜在药物候选物,并为自然界多样化其肽和蛋白质砷的机制所产生的众多类似物打开了大门。

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