The palmitoyl-CoA ligase Fum16 is part of a Fusarium verticillioides fumonisin subcluster involved in self-protection.

IF 5.1 1区 生物学 Q1 MICROBIOLOGY mBio Pub Date : 2025-02-05 Epub Date: 2024-12-20 DOI:10.1128/mbio.02681-24
Fabio Gherlone, Katarina Jojić, Ying Huang, Sandra Hoefgen, Vito Valiante, Slavica Janevska
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Abstract

Fusarium verticillioides produces the mycotoxin fumonisin B1 (FB1), which disrupts sphingolipid biosynthesis by inhibiting ceramide synthase and affects the health of plants, animals, and humans. The means by which F. verticillioides protects itself from its own mycotoxin are not completely understood. Some fumonisin (FUM) cluster genes do not contribute to the biosynthesis of the compound, but their function has remained enigmatic. Recently, we showed that FUM17, FUM18, and FUM19 encode two ceramide synthases and an ATP-binding cassette transporter, respectively, which play a role in antagonizing the toxicity mediated by FB1. In the present work, we uncovered functions of two adjacent genes, FUM15 and FUM16. Using homologous and heterologous expression systems, in F. verticillioides and Saccharomyces cerevisiae, respectively, we provide evidence that both contribute to protection against FB1. Our data indicate a potential role for the P450 monooxygenase Fum15 in the modification and detoxification of FB1 since the deletion and overexpression of the respective gene affected extracellular FB1 levels in both hosts. Furthermore, relative quantification of ceramide intermediates and an in vitro enzyme assay revealed that Fum16 is a functional palmitoyl-CoA ligase. It co-localizes together with the ceramide synthase Fum18 to the endoplasmic reticulum, where they contribute to sphingolipid biosynthesis. Thereby, FUM15-19 constitute a subcluster within the FUM biosynthetic gene cluster dedicated to the fungal self-protection against FB1.IMPORTANCEThe study identifies a five-gene FUM subcluster (FUM15-19) in Fusarium verticillioides involved in self-protection against FB1. FUM16 (palmitoyl-CoA ligase), FUM17, and FUM18 (ceramide synthases) enzymatically supplement ceramide biosynthesis, while FUM19 (ATP-binding cassette transporter) acts as a repressor of the FUM cluster. The evolutionary conservation of FUM15 (P450 monooxygenase) in Fusarium and Aspergillus FUM clusters is discussed, and its effect on extracellular FB1 levels in both native (F. verticillioides) and heterologous (Saccharomyces cerevisiae) hosts is highlighted. These findings enhance our understanding of mycotoxin self-protection mechanisms and could inform strategies for predicting biological activity of unknown secondary metabolites, managing mycotoxin contamination, and developing resistant crop cultivars.

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棕榈酰-CoA 连接酶 Fum16 是参与自我保护的轮纹镰刀菌烟曲霉毒素亚簇的一部分。
黄萎病镰刀菌产生伏马毒素B1 (FB1),通过抑制神经酰胺合成酶破坏鞘脂的生物合成,影响植物、动物和人类的健康。黄萎病杆菌保护自己免受其自身真菌毒素侵害的方法尚不完全清楚。一些伏马菌素(FUM)簇基因不参与化合物的生物合成,但它们的功能仍然是谜。最近,我们发现FUM17、FUM18和FUM19分别编码两个神经酰胺合成酶和一个atp结合盒转运蛋白,它们在拮抗FB1介导的毒性中发挥作用。在本工作中,我们揭示了两个相邻基因,FUM15和FUM16的功能。利用同源和异源表达系统,我们分别在F. verticillioides和Saccharomyces cerevisiae中提供了证据,证明两者都有助于对FB1的保护。我们的数据表明P450单加氧酶Fum15在FB1修饰和解毒中的潜在作用,因为相应基因的缺失和过表达影响了两个宿主的细胞外FB1水平。此外,神经酰胺中间体的相对定量和体外酶分析表明,Fum16是一种功能性棕榈酰辅酶a连接酶。它与神经酰胺合成酶Fum18共同定位于内质网,在那里它们有助于鞘脂的生物合成。因此,FUM15-19构成了FUM生物合成基因簇中的一个亚簇,专门用于真菌对FB1的自我保护。重要意义:该研究确定了在黄萎病镰刀菌中参与对FB1的自我保护的一个五基因FUM亚群(fu15 -19)。FUM16(棕榈酰辅酶a连接酶)、FUM17和FUM18(神经酰胺合成酶)在酶上补充神经酰胺的生物合成,而FUM19 (atp结合盒转运蛋白)作为FUM集群的抑制因子。讨论了Fusarium和Aspergillus FUM集群中FUM15 (P450单加氧酶)的进化保护,并强调了其对原生宿主(F. verticillioides)和异源宿主(Saccharomyces cerevisiae)细胞外FB1水平的影响。这些发现增强了我们对霉菌毒素自我保护机制的理解,并可以为预测未知次生代谢物的生物活性、管理霉菌毒素污染和开发抗性作物品种提供策略。
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来源期刊
mBio
mBio MICROBIOLOGY-
CiteScore
10.50
自引率
3.10%
发文量
762
审稿时长
1 months
期刊介绍: mBio® is ASM''s first broad-scope, online-only, open access journal. mBio offers streamlined review and publication of the best research in microbiology and allied fields.
期刊最新文献
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