Dempo Yudai, Ohta Erika, Nakayama Yasumune, Bamba Takeshi, Fukusaki Eiichiro
Department of Biotechnology, Graduate School of Engineering, Osaka University, 2-1 Yamadaoka, Suita, Osaka 565-0871, Japan.
Metabolites. 2014 Jun 20;4(2):499-516. doi: 10.3390/metabo4020499.
Recently, cyanobacteria have become one of the most attractive hosts for biochemical production due to its high proliferative ability and ease of genetic manipulation. Several researches aimed at biological production using modified cyanobacteria have been reported previously. However, to improve the yield of bioproducts, a thorough understanding of the intercellular metabolism of cyanobacteria is necessary. Metabolic profiling techniques have proven to be powerful tools for monitoring cellular metabolism of various organisms and can be applied to elucidate the details of cyanobacterial metabolism. In this study, we constructed a metabolic profiling method for cyanobacteria using 13C-labeled cell extracts as internal standards. Using this method, absolute concentrations of 84 metabolites were successfully determined in three cyanobacterial strains which are commonly used as background strains for metabolic engineering. By comparing the differences in basic metabolic potentials of the three cyanobacterial strains, we found a well-correlated relationship between intracellular energy state and growth in cyanobacteria. By integrating our results with the previously reported biological production pathways in cyanobacteria, we found putative limiting step of carbon flux. The information obtained from this study will not only help gain insights in cyanobacterial physiology but also serve as a foundation for future metabolic engineering studies using cyanobacteria.
最近,由于蓝藻具有高增殖能力且易于进行基因操作,它已成为生物化学产品生产中最具吸引力的宿主之一。此前已有多项关于利用改造后的蓝藻进行生物生产的研究报道。然而,为了提高生物产品的产量,有必要深入了解蓝藻的细胞内代谢。代谢谱分析技术已被证明是监测各种生物体细胞代谢的有力工具,可用于阐明蓝藻代谢的细节。在本研究中,我们构建了一种以13C标记的细胞提取物作为内标的蓝藻代谢谱分析方法。利用该方法,成功测定了三种常用于代谢工程背景菌株的蓝藻菌株中84种代谢物的绝对浓度。通过比较这三种蓝藻菌株基本代谢潜能的差异,我们发现蓝藻细胞内能量状态与生长之间存在良好的相关性。通过将我们的结果与先前报道的蓝藻生物生产途径相结合,我们发现了碳通量的潜在限制步骤。本研究获得的信息不仅有助于深入了解蓝藻生理学,也将为未来利用蓝藻进行代谢工程研究奠定基础。