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蛋白质组分析揭示了红色红曲霉 mrflbA 缺失的全局响应。

Proteome analysis reveals global response to deletion of mrflbA in Monascus ruber.

机构信息

College of Food Science and Technology, Huazhong Agricultural University, Wuhan, 430070, P. R. China.

Institute of Agricultural Products Processing and Nuclear Agricultural Technology, Hubei Academy of Agricultural Science, Wuhan, 430064, P. R. China.

出版信息

J Microbiol. 2018 Apr;56(4):255-263. doi: 10.1007/s12275-018-7425-8. Epub 2018 Feb 28.

Abstract

Monascus spp. are commonly used for a wide variety of applications in the food and pharmaceutical industries. In previous studies, the knock-out of mrflbA (a putative regulator of the G protein α subunit) in M. ruber led to autolysis of the mycelia, decreased pigmentation and lowered mycotoxin production. Therefore, we aimed to obtain a comprehensive overview of the underlying mechanism of mrflbA deletion at the proteome level. A two-dimensional gel electrophoresis analysis of mycelial proteins indicated that the abundance of 178 proteins was altered in the ΔmrflbA strain, 33 of which were identified with high confidence. The identified proteins are involved in a range of activities, including carbohydrate and amino acid metabolism, hyphal development and the oxidative stress response, protein modification, and the regulation of cell signaling. Consistent with these findings, the activity of antioxidative enzymes and chitinase was elevated in the supernatant of the ΔmrflbA strain. Furthermore, deletion of mrflbA resulted in the transcriptional reduction of secondary metabolites (pigment and mycotoxin). In short, the mutant phenotypes induced by the deletion of mrflbA were consistent with changes in the expression levels of associated proteins, providing direct evidence of the regulatory functions mediated by mrflbA in M. ruber.

摘要

红曲菌属被广泛应用于食品和制药工业的多种领域。先前的研究表明,敲除红曲菌 M. ruber 中的 mrflbA(一种 G 蛋白 α 亚基的假定调控因子)会导致菌丝体自溶、色素形成减少和真菌毒素产量降低。因此,我们旨在从蛋白质组水平上获得 mrflbA 缺失的潜在机制的全面概述。菌丝体蛋白的二维凝胶电泳分析表明,mrflbA 缺失菌株中 178 种蛋白质的丰度发生了改变,其中 33 种蛋白质被高度鉴定。鉴定出的蛋白质参与多种活动,包括碳水化合物和氨基酸代谢、菌丝发育和氧化应激反应、蛋白质修饰以及细胞信号转导的调节。与这些发现一致的是,mrflbA 缺失菌株上清液中的抗氧化酶和几丁质酶活性升高。此外,mrflbA 的缺失导致次级代谢物(色素和真菌毒素)的转录减少。总之,mrflbA 缺失引起的突变表型与相关蛋白表达水平的变化一致,为 mrflbA 在红曲菌中的调控功能提供了直接证据。

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