Helmel Michaela, Marchetti-Deschmann Martina, Raus Martin, Posch Andreas E, Herwig Christoph, Šebela Marek, Allmaier Günter
Institute of Chemical Technologies and Analytics, Vienna University of Technology, A-1060 Vienna, Austria.
Department of Protein Biochemistry and Proteomics, Centrum of the Region Hana for Biotechnological and Agricultural Research, Faculty of Sciences, Palacký University, CZ-78371 Olomouc, Czech Republic.
Anal Biochem. 2015 Feb 1;470:25-33. doi: 10.1016/j.ab.2014.10.008. Epub 2014 Oct 22.
Penicillin production during a fermentation process using industrial strains of Penicillium chrysogenum is a research topic permanently discussed since the accidental discovery of the antibiotic. Intact cell mass spectrometry (ICMS) can be a fast and novel monitoring tool for the fermentation progress during penicillin V production in a nearly real-time fashion. This method is already used for the characterization of microorganisms and the differentiation of fungal strains; therefore, the application of ICMS to samples directly harvested from a fermenter is a promising possibility to get fast information about the progress of fungal growth. After the optimization of the ICMS method to penicillin V fermentation broth samples, the obtained ICMS data were evaluated by hierarchical cluster analysis or an in-house software solution written especially for ICMS data comparison. Growth stages of a batch and fed-batch fermentation of Penicillium chrysogenum are differentiated by one of those statistical approaches. The application of two matrix-assisted laser desorption/ionization time-of-flight (MALDI-TOF) instruments in the linear positive ion mode from different vendors demonstrated the universal applicability of the developed ICMS method. The base for a fast and easy-to-use method for monitoring the fermentation progress of P. chrysogenum is created with this ICMS method developed especially for fermentation broth samples.
自青霉素意外发现以来,利用产黄青霉工业菌株进行发酵生产青霉素一直是一个备受讨论的研究课题。完整细胞质谱分析(ICMS)可以成为一种快速且新颖的监测工具,以近乎实时的方式监测青霉素V生产过程中的发酵进程。该方法已用于微生物表征和真菌菌株鉴别;因此,将ICMS应用于直接从发酵罐收获的样品,有望快速获取有关真菌生长进程的信息。在将ICMS方法优化用于青霉素V发酵液样品后,通过层次聚类分析或专门为ICMS数据比较编写的内部软件解决方案对获得的ICMS数据进行评估。产黄青霉分批发酵和补料分批发酵的生长阶段可通过这些统计方法之一进行区分。使用不同供应商的两台基质辅助激光解吸/电离飞行时间(MALDI-TOF)仪器在线性正离子模式下进行的实验证明了所开发的ICMS方法具有普遍适用性。这种专门为发酵液样品开发的ICMS方法为快速、易用的产黄青霉发酵进程监测方法奠定了基础。