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输出排序和优先级系统(OOPS):对生物合成基因簇进行排名以增强生物活性代谢产物的发现。

Output ordering and prioritisation system (OOPS): ranking biosynthetic gene clusters to enhance bioactive metabolite discovery.

机构信息

Manchester Institute of Biotechnology, School of Chemistry, Faculty of Science and Engineering, University of Manchester, Manchester, M1 7DN, UK.

出版信息

J Ind Microbiol Biotechnol. 2018 Jul;45(7):615-619. doi: 10.1007/s10295-017-1993-1. Epub 2017 Dec 18.

Abstract

The rapid increase of publicly available microbial genome sequences has highlighted the presence of hundreds of thousands of biosynthetic gene clusters (BGCs) encoding valuable secondary metabolites. The experimental characterization of new BGCs is extremely laborious and struggles to keep pace with the in silico identification of potential BGCs. Therefore, the prioritisation of promising candidates among computationally predicted BGCs represents a pressing need. Here, we propose an output ordering and prioritisation system (OOPS) which helps sorting identified BGCs by a wide variety of custom-weighted biological and biochemical criteria in a flexible and user-friendly interface. OOPS facilitates a judicious prioritisation of BGCs using G+C content, coding sequence length, gene number, cluster self-similarity and codon bias parameters, as well as enabling the user to rank BGCs based upon BGC type, novelty, and taxonomic distribution. Effective prioritisation of BGCs will help to reduce experimental attrition rates and improve the breadth of bioactive metabolites characterized.

摘要

大量公开的微生物基因组序列的快速增加,凸显了数以十万计的生物合成基因簇(BGCs)的存在,这些基因簇编码有价值的次生代谢产物。新 BGCs 的实验表征极其费力,难以跟上潜在 BGCs 的计算机识别速度。因此,在计算预测的 BGCs 中对有前途的候选者进行优先级排序是当务之急。在这里,我们提出了一种输出排序和优先级系统(OOPS),该系统可以通过灵活且用户友好的界面,根据各种自定义加权的生物学和生物化学标准对鉴定出的 BGCs 进行排序。OOPS 可以根据 G+C 含量、编码序列长度、基因数量、簇自相似性和密码子偏好参数对 BGCs 进行合理的优先级排序,还可以让用户根据 BGC 类型、新颖性和分类分布对 BGCs 进行排序。BGCs 的有效优先级排序将有助于降低实验损耗率,并提高所表征的生物活性代谢产物的广度。

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