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Spider Venom: Components Modes of Action and Novel Strategies in Transcriptomic and Proteomic Analyses

机译:蜘蛛毒液:转录组和蛋白质组学分析的组成作用方式和新策略

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摘要

This review gives an overview on the development of research on spider venoms with a focus on structure and function of venom components and techniques of analysis. Major venom component groups are small molecular mass compounds, antimicrobial (also called cytolytic, or cationic) peptides (only in some spider families), cysteine-rich (neurotoxic) peptides, and enzymes and proteins. Cysteine-rich peptides are reviewed with respect to various structural motifs, their targets (ion channels, membrane receptors), nomenclature, and molecular binding. We further describe the latest findings concerning the maturation of antimicrobial, and cysteine-rich peptides that are in most known cases expressed as propeptide-containing precursors. Today, venom research, increasingly employs transcriptomic and mass spectrometric techniques. Pros and cons of venom gland transcriptome analysis with Sanger, 454, and Illumina sequencing are discussed and an overview on so far published transcriptome studies is given. In this respect, we also discuss the only recently described cross contamination arising from multiplexing in Illumina sequencing and its possible impacts on venom studies. High throughput mass spectrometric analysis of venom proteomes (bottom-up, top-down) are reviewed.
机译:这篇综述概述了蜘蛛毒液的研究进展,重点是毒液成分的结构和功能以及分析技术。毒液的主要成分是小分子化合物,抗菌肽(也称为细胞溶解肽或阳离子肽)(仅在某些蜘蛛家族中),富含半胱氨酸的肽(神经毒性)以及酶和蛋白质。审查了富含半胱氨酸的肽的各种结构基序,其靶标(离子通道,膜受体),命名法和分子结合。我们进一步描述了有关抗菌剂和富含半胱氨酸的肽成熟的最新发现,这些肽在大多数情况下表示为含前肽的前体。如今,毒液研究越来越多地采用转录组学和质谱技术。讨论了使用Sanger,454和Illumina测序进行毒腺转录组分析的优缺点,并概述了迄今为止已发表的转录组研究。在这方面,我们还讨论了Illumina测序中多重化所引起的最新描述的交叉污染及其对毒液研究的可能影响。审查了高效率的毒液蛋白质组质谱分析(自下而上,自上而下)。

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