Botany and Microbiology Department, Faculty of Science, Zagazig University, Zagazig, Egypt.
Animal Health Research Institute, Cairo, Egypt.
BMC Microbiol. 2023 May 17;23(1):135. doi: 10.1186/s12866-023-02884-z.
Mycophenolic acid (MPA) is the active ingredient in the most important immunosuppressive pharmaceuticals. It has antifungal, antibacterial, antiviral, anti-psoriasis, and antitumor activities. Therefore, its overproduction in addition to gene expression analysis was our main target. Through this study, we isolated a novel potent mycophenolic acid (MPA) producer strain of the genus Penicillium from the refrigerated Mozzarella cheese and it was identified with the molecular marker ITS and benA genes as P. arizonenseHEWt1. Three MPA overproducer mutants were isolated by exposing the wild type to different doses of gamma-rays, and the fermentation conditions for the highest production of MPA were optimized. The results indicated that MPA amounts produced by the mutants MT1, MT2, and MT3 were increased by 2.1, 1.7, and 1.6-fold, respectively, compared with the wild-type. The growth of both mutant and wild-type strains on PD broth, adjusted to pH 6 and incubated at 25 °C for 15 d, were the best conditions for maximum production of MPA. In a silico study, five orthologs genes of MPA biosynthesizing gene clusters in P. brevicompactum were predicted from the genome of P. arizonense. Sequencing and bioinformatic analyses proved the presence of five putative genes namely mpaA, mpaC, mpaF, mpaG, and mpaH in the P. arizonense HEWt1 genome. Gene expression analysis by qRT-PCR indicated an increase in the transcription value of all annotated genes in the three mutants over the wild type. A highly significant increase in the gene expression of mpaC, mpaF, and mpaH was observed in P. arizonense-MT1 compared with wild-type. These results confirmed the positive correlation of these genes in MPA biosynthesis and are the first report regarding the production of MPA by P. arizonense.Kew word.Mycophenolic acid, Penicillium arizonense, mutagenesis, gene expression.
霉酚酸(MPA)是最重要的免疫抑制药物中的活性成分。它具有抗真菌、抗菌、抗病毒、抗银屑病和抗肿瘤的活性。因此,除了基因表达分析外,其过量生产是我们的主要目标。通过这项研究,我们从冷藏马苏里拉奶酪中分离到一株新型的、强效的产霉酚酸(MPA)的青霉属菌株,并通过 ITS 和 benA 基因等分子标记将其鉴定为 P. arizonense HEWt1。通过将野生型菌株暴露于不同剂量的伽马射线,我们分离出了三个 MPA 高产突变体,并优化了 MPA 高产的发酵条件。结果表明,与野生型相比,突变体 MT1、MT2 和 MT3 产生的 MPA 量分别增加了 2.1、1.7 和 1.6 倍。在 PD 肉汤中,无论是突变体还是野生型菌株,在 pH6 条件下,于 25°C 培养 15 天,是 MPA 产量最高的最佳条件。在计算机研究中,从 P. arizonense 的基因组中预测了 P. brevicompactum 中 MPA 生物合成基因簇的五个直系同源基因。测序和生物信息学分析证明,在 P. arizonense HEWt1 基因组中存在五个推定基因,即 mpaA、mpaC、mpaF、mpaG 和 mpaH。qRT-PCR 基因表达分析表明,三个突变体中所有注释基因的转录值均高于野生型。与野生型相比,P. arizonense-MT1 中 mpaC、mpaF 和 mpaH 的基因表达显著增加。这些结果证实了这些基因在 MPA 生物合成中的正相关关系,这是关于 P. arizonense 产生 MPA 的首次报道。关键词:霉酚酸、青霉属、诱变、基因表达。