Traynor Aimee M, Sarikaya-Bayram Özlem, Bayram Özgür, Antonio Calera José, Doyle Sean
Department of Biology, Maynooth University, Maynooth, Co. Kildare, Ireland.
Instituto de Biología Funcional y Genómica (IBFG-CSIC), Universidad de Salamanca, Salamanca, Spain; Departamento de Microbiología y Genética, Universidad de Salamanca, Salamanca, Spain.
Fungal Genet Biol. 2023 May;166:103795. doi: 10.1016/j.fgb.2023.103795. Epub 2023 Apr 5.
Gliotoxin (GT) biosynthesis in fungi is encoded by the gli biosynthetic gene cluster. While GT addition autoinduces biosynthesis, Zn has been shown to attenuate cluster activity, and it was speculated that identification of Zn2Cys6 binuclear transcription factor GliZ binding partners might provide insight into this observation. Using the Tet-ON induction system, doxycycline (DOX) presence induced GliZ fusion protein expression in, and recovery of GT biosynthesis by, A. fumigatus ΔgliZ::HA-gliZ and ΔgliZ::TAP-gliZ strains, respectively. Quantitative RT-PCR confirmed that DOX induces gli cluster gene expression (n = 5) in both A. fumigatus HA-GliZ and TAP-GliZ strains. GT biosynthesis was evident in Czapek-Dox and in Sabouraud media, however tagged GliZ protein expression was more readily detected in Sabouraud media. Unexpectedly, Zn was essential for GliZ fusion protein expression in vivo, following 3 h DOX induction. Moreover, HA-GliZ abundance was significantly higher in either DOX/GT or DOX/Zn, compared to DOX-only. This suggests that while GT induction is still intact, Zn inhibition of HA-GliZ production in vivo is lost. Co-immunoprecipitation revealed that GT oxidoreductase GliT associates with GliZ in the presence of GT, suggesting a potential protective role. Additional putative HA-GliZ interacting proteins included cystathionine gamma lyase, ribosomal protein L15 and serine hydroxymethyltransferase (SHMT). Total mycelial quantitative proteomic data revealed that GliT and GtmA, as well as several other gli cluster proteins, are increased in abundance or uniquely expressed with GT addition. Proteins involved in sulphur metabolism are also differentially expressed with GT or Zn presence. Overall, we disclose that under DOX induction GliZ functionality is unexpectedly evident in zinc-replete media, subject to GT induction and that GliT appears to associate with GliZ, potentially to prevent dithiol gliotoxin (DTG)-mediated GliZ inactivation by zinc ejection.
真菌中Gliotoxin(GT)的生物合成由gli生物合成基因簇编码。虽然添加GT可自动诱导生物合成,但已表明锌会减弱该基因簇的活性,并且据推测,鉴定Zn2Cys6双核转录因子GliZ的结合伙伴可能有助于解释这一现象。使用Tet-ON诱导系统,强力霉素(DOX)的存在分别诱导烟曲霉ΔgliZ::HA-gliZ和ΔgliZ::TAP-gliZ菌株中GliZ融合蛋白的表达,并恢复GT的生物合成。定量逆转录聚合酶链反应(RT-PCR)证实,DOX可诱导烟曲霉HA-GliZ和TAP-GliZ菌株中gli基因簇的基因表达(n = 5)。在察氏-多克斯(Czapek-Dox)培养基和沙氏(Sabouraud)培养基中均能明显观察到GT的生物合成,然而,在沙氏培养基中更容易检测到标记的GliZ蛋白表达。出乎意料的是,在DOX诱导3小时后,锌对于体内GliZ融合蛋白的表达至关重要。此外,与仅使用DOX相比,在DOX/GT或DOX/Zn条件下,HA-GliZ的丰度显著更高。这表明虽然GT诱导仍然完好,但锌在体内对HA-GliZ产生的抑制作用丧失。免疫共沉淀显示,在GT存在的情况下,GT氧化还原酶GliT与GliZ相互作用,表明其可能具有保护作用。其他假定的与HA-GliZ相互作用的蛋白包括胱硫醚γ裂解酶、核糖体蛋白L15和丝氨酸羟甲基转移酶(SHMT)。总的菌丝体定量蛋白质组学数据显示,GliT和GtmA以及其他几种gli基因簇蛋白,在添加GT后丰度增加或特异性表达。参与硫代谢的蛋白质在有GT或锌存在时也有差异表达。总体而言,我们发现,在DOX诱导下,GliZ的功能在富含锌的培养基中出乎意料地明显,受到GT诱导,并且GliT似乎与GliZ相关联,可能是为了防止二硫醇gliotoxin(DTG)介导的GliZ因锌排出而失活。