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PNAS Plus: Genomic charting of ribosomally synthesized natural product chemical space facilitates targeted mining

机译:PNAS Plus:核糖体合成的天然产物化学空间的基因组图绘制有助于有针对性的开采

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摘要

Microbial natural products are an evolved resource of bioactive small molecules, which form the foundation of many modern therapeutic regimes. Ribosomally synthesized and posttranslationally modified peptides (RiPPs) represent a class of natural products which have attracted extensive interest for their diverse chemical structures and potent biological activities. Genome sequencing has revealed that the vast majority of genetically encoded natural products remain unknown. Many bioinformatic resources have therefore been developed to predict the chemical structures of natural products, particularly nonribosomal peptides and polyketides, from sequence data. However, the diversity and complexity of RiPPs have challenged systematic investigation of RiPP diversity, and consequently the vast majority of genetically encoded RiPPs remain chemical “dark matter.” Here, we introduce an algorithm to catalog RiPP biosynthetic gene clusters and chart genetically encoded RiPP chemical space. A global analysis of 65,421 prokaryotic genomes revealed 30,261 RiPP clusters, encoding 2,231 unique products. We further leverage the structure predictions generated by our algorithm to facilitate the genome-guided discovery of a molecule from a rare family of RiPPs. Our results provide the systematic investigation of RiPP genetic and chemical space, revealing the widespread distribution of RiPP biosynthesis throughout the prokaryotic tree of life, and provide a platform for the targeted discovery of RiPPs based on genome sequencing.
机译:微生物天然产物是生物活性小分子的进化资源,它构成了许多现代治疗方案的基础。核糖体合成和翻译后修饰的肽(RiPPs)代表了一类天然产物,由于其多样的化学结构和强大的生物活性而引起了广泛的兴趣。基因组测序表明,绝大多数遗传编码的天然产物仍然未知。因此,已经开发了许多生物信息资源来根据序列数据预测天然产物的化学结构,特别是非核糖体肽和聚酮化合物。但是,RiPP的多样性和复杂性挑战了对RiPP多样性的系统研究,因此,绝大多数遗传编码的RiPP仍然是化学的“暗物质”。在这里,我们介绍一种对RiPP生物合成基因簇进行分类并绘制遗传编码RiPP化学空间图的算法。对65,421个原核基因组的全球分析显示30,261个RiPP簇,编码2,231个独特的产物。我们进一步利用由我们的算法生成的结构预测,以促进基因组指导的罕见RiPPs家族分子的发现。我们的结果提供了对RiPP遗传和化学空间的系统研究,揭示了RiPP生物合成在整个原核生物树中的广泛分布,并为基于基因组测序的RiPP靶向发现提供了平台。

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