Department of Biochemistry and Molecular Biology, Institute of Biological Sciences II, Federal University of Goiás, Goiânia, Brazil.
Multiuser Laboratory for the Evaluation of Molecules, Cells and Tissues, Federal University of Goiás, Goiânia, Brazil.
PLoS Negl Trop Dis. 2024 Sep 3;18(9):e0012452. doi: 10.1371/journal.pntd.0012452. eCollection 2024 Sep.
The formamidase (FMD) enzyme plays an important role in fungal thriving by releasing a secondary nitrogen source as a product of its activity. In Paracoccidioides species, previous studies have demonstrated the upregulation of this enzyme in a wide range of starvation and infective-like conditions. However, Paracoccidioides lutzii formamidase has not yet been defined as a virulence factor. Here, by employing in vivo infections using an fmd-silenced strain in Galleria mellonella larvae model, we demonstrate the influence of formamidase in P. lutzii's immune stimulation and pathogenicity. The formamidase silencing resulted in improper arrangement of the nodules, poor melanogenesis and decreased fungal burden. Thus, we suggest that formamidase may be a piece composing the process of molecular recognition by Galleria immune cells. Furthermore, formamidase silencing doubled the observed survival rate of the larvae, demonstrating its importance in fungal virulence in vivo. Therefore, our findings indicate that formamidase contributes to Galleria's immune incitement and establishes the role of this enzyme as a P. lutzii virulence factor.
脱酰胺酶(FMD)酶通过释放作为其活性产物的次要氮源,在真菌的生长中发挥重要作用。在副球孢子菌属物种中,先前的研究表明,该酶在多种饥饿和感染样条件下上调。然而,副球孢子菌 lutzii 脱酰胺酶尚未被定义为毒力因子。在这里,我们通过使用沉默 fmd 的菌株在金龟子幼虫模型中的体内感染实验,证明了脱酰胺酶在 P. lutzii 的免疫刺激和致病性中的影响。脱酰胺酶的沉默导致结节排列不当、黑色素生成不良和真菌负荷降低。因此,我们认为脱酰胺酶可能是构成金龟子免疫细胞进行分子识别过程的一部分。此外,脱酰胺酶的沉默使幼虫的存活率增加了一倍,这表明它在体内真菌毒力中的重要性。因此,我们的研究结果表明,脱酰胺酶有助于金龟子的免疫刺激,并确立了该酶作为副球孢子菌 lutzii 毒力因子的作用。