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针对人类致病真菌烟曲霉的二维凝胶电泳方案的优化。

Optimisation of a 2-D gel electrophoresis protocol for the human-pathogenic fungus Aspergillus fumigatus.

作者信息

Kniemeyer Olaf, Lessing Franziska, Scheibner Olaf, Hertweck Christian, Brakhage Axel A

机构信息

Department of Microbiology and Molecular Biology, Friedrich-Schiller-University, Jena, Germany.

出版信息

Curr Genet. 2006 Mar;49(3):178-89. doi: 10.1007/s00294-005-0047-9. Epub 2005 Dec 17.

Abstract

Aspergillus fumigatus is the most important airborne fungal pathogen causing life-threatening infections in immunosuppressed patients. One of the important questions concerning A. fumigatus is the identification of pathogenicity determinants. To obtain a comprehensive overview about the proteins produced at different physiological conditions that are related to the infectious process a proteomic approach has been applied. Here, 2-D gel electrophoresis for filamentous fungi was optimised concerning removal of interfering compounds, protein extraction and separation methods. A trichloroacetic acid-based precipitation method of proteins with their subsequent solubilisation by the use of a combination of CHAPS with a second sulfobetaine detergent gave the best results. The optimised protocol was evaluated by the analysis of the proteomes of A. fumigatus grown on two different carbon sources, i.e., glucose and ethanol. Carbon catabolite repression has not been studied in detail at the protein level in A. fumigatus yet. In addition, growth on ethanol leads to activation of the glyoxylate cycle which was shown to be essential for pathogenesis in bacteria and fungi. In A. fumigatus, differential patterns of enzymes of the gluconeogenesis, glyoxylate cycle and ethanol degradation pathway during growth on glucose and ethanol were observed.

摘要

烟曲霉是最重要的空气传播真菌病原体,可在免疫抑制患者中引起危及生命的感染。关于烟曲霉的一个重要问题是致病性决定因素的鉴定。为了全面了解在不同生理条件下产生的与感染过程相关的蛋白质,已应用蛋白质组学方法。在此,针对丝状真菌的二维凝胶电泳在去除干扰化合物、蛋白质提取和分离方法方面进行了优化。基于三氯乙酸的蛋白质沉淀方法,随后通过使用CHAPS与第二种磺基甜菜碱去污剂的组合进行溶解,效果最佳。通过分析在两种不同碳源(即葡萄糖和乙醇)上生长的烟曲霉的蛋白质组来评估优化方案。碳代谢物阻遏在烟曲霉的蛋白质水平上尚未得到详细研究。此外,在乙醇上生长会导致乙醛酸循环的激活,这已被证明对细菌和真菌的致病性至关重要。在烟曲霉中,观察到在葡萄糖和乙醇上生长期间糖异生、乙醛酸循环和乙醇降解途径的酶的差异模式。

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