Departamento de Medicina Preventiva y Salud Pública, Ciencias de la Alimentación, Bromatología, Toxicología y Medicina Legal, Universitat de València, Vicente Andrès Estellès s/n 46100 Burjassot, Valencia, Spain.
Int J Food Microbiol. 2011 Jun 30;147(3):162-9. doi: 10.1016/j.ijfoodmicro.2011.03.021. Epub 2011 Apr 8.
Aspergillus carbonarius is an important ochratoxin A producing fungus that is responsible for mycotoxin contamination of grapes and wine. In this study, the proteomes of highly (W04-40) and weakly (W04-46) OTA-producing A. carbonarius strains were compared to identify proteins that may be involved in OTA biosynthesis. Protein samples were extracted from two biological replicates and subjected to two dimensional gel electrophoresis analysis and mass spectrometry. Expression profile comparison (PDQuest software), revealed 21 differential spots that were statistically significant and showed a two-fold change in expression, or greater. Among these, nine protein spots were identified by MALDI-MS/MS and MASCOT database and twelve remain unidentified. Of the identified proteins, seven showed a higher expression in strain W04-40 (high OTA producer) and two in strain W04-46 (low OTA producer). Some of the identified amino acid sequences shared homology with proteins involved in regulation, amino acid metabolism, oxidative stress and sporulation. It is worth noting the presence of a protein with 126.5 fold higher abundance in strain W04-40 showing homology with protein CipC, a protein with unknown function related with pathogenesis and mycotoxin production by some authors. Variations in protein expression were also further investigated at the mRNA level by real-time PCR analysis. The mRNA expression levels from three identified proteins including CipC showed correlation with protein expression levels. This study represents the first proteomic analysis for a comparison of two A. carbonarius strains with different OTA production and will contribute to a better understanding of the molecular events involved in OTA biosynthesis.
炭黑曲霉是一种重要的产赭曲霉毒素 A 的真菌,负责葡萄和葡萄酒中真菌毒素的污染。在这项研究中,比较了高(W04-40)和低(W04-46)产 OTA 炭黑曲霉菌株的蛋白质组,以鉴定可能参与 OTA 生物合成的蛋白质。从两个生物重复中提取蛋白质样品,进行二维凝胶电泳分析和质谱分析。表达谱比较(PDQuest 软件)显示,有 21 个差异斑点具有统计学意义,表达水平增加了两倍或更多。其中,9 个蛋白斑点通过 MALDI-MS/MS 和 MASCOT 数据库鉴定,12 个仍未鉴定。在所鉴定的蛋白质中,有 7 种在 W04-40 菌株(高 OTA 产生菌)中表达较高,2 种在 W04-46 菌株(低 OTA 产生菌)中表达较高。一些鉴定出的氨基酸序列与参与调节、氨基酸代谢、氧化应激和孢子形成的蛋白质具有同源性。值得注意的是,在 W04-40 菌株中存在一种蛋白质,其丰度比 W04-46 菌株高 126.5 倍,与蛋白 CipC 同源,CipC 是一种功能未知的蛋白质,与一些作者提出的致病性和产真菌毒素有关。通过实时 PCR 分析进一步研究了蛋白质表达的变化。包括 CipC 在内的 3 种已鉴定蛋白的 mRNA 表达水平与蛋白表达水平相关。本研究代表了首次对两种具有不同 OTA 产量的炭黑曲霉菌株进行蛋白质组比较,将有助于更好地理解 OTA 生物合成涉及的分子事件。