Doyle Sean, Jones Gary W, Dolan Stephen K
Department of Biology, Maynooth University, Maynooth, Co. Kildare, Ireland.
Department of Biology, Maynooth University, Maynooth, Co. Kildare, Ireland; Centre for Biomedical Science Research, Leeds Beckett University, Leeds LS1 3HE, UK.
Fungal Biol. 2018 Apr;122(4):214-221. doi: 10.1016/j.funbio.2017.12.007. Epub 2017 Dec 18.
Gliotoxin is an epipolythiodioxopiperazine (ETP) class toxin, contains a disulfide bridge that mediates its toxic effects via redox cycling and is produced by the opportunistic fungal pathogen Aspergillus fumigatus. The gliotoxin bis-thiomethyltransferase, GtmA, attenuates gliotoxin biosynthesis in A. fumigatus by conversion of dithiol gliotoxin to bis-thiomethylgliotoxin (BmGT). Here we show that disruption of dithiol gliotoxin bis-thiomethylation functionality in A. fumigatus results in significant remodelling of the A. fumigatus secondary metabolome upon extended culture. RP-HPLC and LC-MS/MS analysis revealed the reduced production of a plethora of unrelated biosynthetic gene cluster-encoded metabolites, including pseurotin A, fumagillin, fumitremorgin C and tryprostatin B, occurs in A. fumigatus ΔgtmA upon extended incubation. Parallel quantitative proteomic analysis of A. fumigatus wild-type and ΔgtmA during extended culture revealed cognate abundance alteration of proteins encoded by relevant biosynthetic gene clusters, allied to multiple alterations in hypoxia-related proteins. The data presented herein reveal a previously concealed functionality of GtmA in facilitating the biosynthesis of other BGC-encoded metabolites produced by A. fumigatus.
胶霉毒素是一种表聚多硫二氧哌嗪(ETP)类毒素,含有一个二硫键,通过氧化还原循环介导其毒性作用,由机会性真菌病原体烟曲霉产生。胶霉毒素双硫甲基转移酶GtmA通过将二硫醇胶霉毒素转化为双硫甲基胶霉毒素(BmGT)来减弱烟曲霉中胶霉毒素的生物合成。在此我们表明,烟曲霉中二硫醇胶霉毒素双硫甲基化功能的破坏会导致延长培养后烟曲霉次级代谢组的显著重塑。RP-HPLC和LC-MS/MS分析显示,在延长培养后,烟曲霉ΔgtmA中大量不相关的生物合成基因簇编码的代谢产物产量降低,包括pseurotin A、烟曲霉素、烟曲霉震颤素C和色胺酮B。在延长培养期间对烟曲霉野生型和ΔgtmA进行的平行定量蛋白质组分析显示,相关生物合成基因簇编码的蛋白质同源丰度发生改变,这与缺氧相关蛋白质的多种改变有关。本文提供的数据揭示了GtmA在促进烟曲霉产生的其他BGC编码代谢产物生物合成方面以前隐藏的功能。