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Advances in the arsenal of tools available enabling the discovery of novel lantibiotics with therapeutic potential

机译:现有工具的进步,使发现具有治疗潜力的新型羊毛硫抗生素成为可能

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Introduction: Lantibiotics are ribosomally synthesised peptides, which undergo extensive post-translational modification. Their mode of action and effectiveness against multi-drug-resistant pathogens, and relatively low toxicity, makes them attractive therapeutic options. Areas covered: This article provides background information on the four classes of lanthipeptides that have been described to date. Due to the clinical potential of these agents, specifically those from Class I and II, it is essential to identify organisms that harbour potentially interesting clusters encoding novel lantibiotics. Multiple emerging technologies have been applied to address this issue, including genome mining and specific bioinformatics programs designed to identify lantibiotic clusters present within the genome sequences. These clusters can then be effectively expressed using optimised heterologous expression systems, which are ideally amenable to large-scale production. Expert opinion: The continuing expansion of publicly available genomes, particularly genomes from microorganisms isolated from under-explored environments, combined with powerful bioinformatics tools able to accurately identify clusters of interest are of paramount importance in the discovery of novel lantibiotics. Detailed analysis of clusters drastically reduces dereplication time, which was often problematic when using the traditional method of isolation, purification and then identification. Allowing a more focused direction of 'wet lab' work, targeting the most promising agents, greatly increases the chance of novel lantibiotic discovery and development. High-throughput screening strategies are also required to enable the efficient analysis of these potentially clinically relevant agents.
机译:简介:羊毛硫抗生素是核糖体合成的肽,会经历广泛的翻译后修饰。它们对多种耐药病原体的作用方式和有效性,以及相对较低的毒性,使其成为有吸引力的治疗选择。涵盖的领域:本文提供了迄今为止已描述的四类瘦肽的背景信息。由于这些药物的临床潜力,特别是来自I和II类的药物的临床潜力,因此必须鉴定出具有潜在有趣的编码新型羊毛硫抗生素簇的生物。已经应用了多种新兴技术来解决该问题,包括基因组挖掘和旨在识别基因组序列内存在的羊毛硫抗生素簇的特定生物信息学程序。然后可以使用优化的异源表达系统有效表达这些簇,所述异源表达系统理想地适合大规模生产。专家意见:公开可用基因组的不断扩展,尤其是来自未开发环境中分离出的微生物的基因组,与能够准确识别目标簇的强大生物信息学工具相结合,对于发现新型羊毛硫抗生素至关重要。对簇的详细分析大大减少了重复的时间,这在使用传统的分离,纯化和鉴定方法时经常会出现问题。以最有前景的药物为目标,允许“湿实验室”工作的方向更加集中,大大增加了新型羊毛硫抗生素发现和开发的机会。还需要高通量筛选策略,以能够有效分析这些潜在的临床相关药物。

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