Haas Drago, Barba Matthieu, Vicente Cláudia M, Nezbedová Šarká, Garénaux Amélie, Bury-Moné Stéphanie, Lorenzi Jean-Noël, Hôtel Laurence, Laureti Luisa, Thibessard Annabelle, Le Goff Géraldine, Ouazzani Jamal, Leblond Pierre, Aigle Bertrand, Pernodet Jean-Luc, Lespinet Olivier, Lautru Sylvie
Université Paris-Saclay, CEA, CNRS, Institute for Integrative Biology of the Cell (I2BC), 91198, Gif-sur-Yvette, France.
Université de Lorraine, INRAE, DynAMic, Nancy 54000, France.
NAR Genom Bioinform. 2024 Jun 19;6(2):lqae069. doi: 10.1093/nargab/lqae069. eCollection 2024 Jun.
Microbial specialized metabolite biosynthetic gene clusters (SMBGCs) are a formidable source of natural products of pharmaceutical interest. With the multiplication of genomic data available, very efficient bioinformatic tools for automatic SMBGC detection have been developed. Nevertheless, most of these tools identify SMBGCs based on sequence similarity with enzymes typically involved in specialised metabolism and thus may miss SMBGCs coding for undercharacterised enzymes. Here we present Synteruptor (https://bioi2.i2bc.paris-saclay.fr/synteruptor), a program that identifies genomic islands, known to be enriched in SMBGCs, in the genomes of closely related species. With this tool, we identified a SMBGC in the genome of ATCC23877, undetected by antiSMASH versions prior to antiSMASH 5, and experimentally demonstrated that it directs the biosynthesis of two metabolites, one of which was identified as sphydrofuran. Synteruptor is also a valuable resource for the delineation of individual SMBGCs within antiSMASH regions that may encompass multiple clusters, and for refining the boundaries of these SMBGCs.
微生物特殊代谢物生物合成基因簇(SMBGCs)是具有药用价值的天然产物的重要来源。随着可用基因组数据的增加,已经开发出了非常高效的用于自动检测SMBGCs的生物信息学工具。然而,这些工具中的大多数是基于与通常参与特殊代谢的酶的序列相似性来识别SMBGCs的,因此可能会遗漏编码特征不明确的酶的SMBGCs。在此,我们展示了Synteruptor(https://bioi2.i2bc.paris-saclay.fr/synteruptor),这是一个在密切相关物种的基因组中识别已知富含SMBGCs的基因组岛的程序。使用这个工具,我们在ATCC23877的基因组中鉴定出一个SMBGC,在antiSMASH 5之前的antiSMASH版本中未检测到,并且通过实验证明它指导了两种代谢物的生物合成,其中一种被鉴定为sphydrofuran。Synteruptor也是一种有价值的资源,可用于在可能包含多个簇的antiSMASH区域内描绘单个SMBGCs,并用于完善这些SMBGCs的边界。