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Peptidomics of Circular Cysteine-Rich Plant Peptides:Analysis of the Diversity of Cyclotides from Viola tricolor by Transcriptome and Proteome Mining

机译:富含半胱氨酸的植物肽的肽组学:转录组和蛋白质组挖掘技术分析三色堇菜中环氧化物的多样性

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摘要

Cyclotides are plant-derived mini proteins. They are genetically encoded as precursor proteins that become post-translationally modified to yield circular cystine-knotted molecules. Because of this structural topology cyclotides resist enzymatic degradation in biological fluids, and hence they are considered as promising lead molecules for pharmaceutical applications. Despite ongoing efforts to discover novel cyclotides and analyze their biodiversity, it is not clear how many individual peptides a single plant specimen can express. Therefore, we investigated the transcriptome and cyclotide peptidome of Viola tricolor. Transcriptome mining enabled the characterization of cyclotide precursor architecture and processing sites important for biosynthesis of mature peptides. The cyclotide peptidome was explored by mass spectrometry and bottom-up proteomics using the extracted peptide sequences as queries for database searching. In total 164 cyclotides were discovered by nucleic acid and peptide analysis in V. tricolor. Therefore, violaceous plants at a global scale may be the source to as many as 150 000 individual cyclotides. Encompassing the diversity of V. tricolor as a combinatorial library of bioactive peptides, this commercially available medicinal herbmay be a suitable starting point for future bioactivity-guided screeningstudies.
机译:环肽是植物来源的微型蛋白。它们在基因上编码为前体蛋白,可被翻译后修饰以产生环状的胱氨酸结分子。由于这种结构拓扑,环肽抗拒生物流体中的酶促降解,因此被认为是制药应用中有前途的先导分子。尽管人们一直在努力寻找新的环类化合物并分析其生物多样性,但尚不清楚单个植物标本可以表达多少个多肽。因此,我们研究了三色堇菜的转录组和环肽组。转录组挖掘使表征环肽前体结构和加工位点对于成熟肽的生物合成很重要。通过质谱分析和自下而上的蛋白质组学,使用提取的肽序列作为数据库搜索查询来探索环肽肽组。通过核酸和肽分析在三色葡萄中总共发现了164个环肽。因此,全球范围内的紫色植物可能是多达150 000个个体环素的来源。该市售药草包含三色芒草作为生物活性肽组合库的多样性可能是未来生物活性指导筛选的合适起点学习。

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