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13C核磁共振证据表明丙酮酸激酶通量衰减是枯草芽孢杆菌中酸生成受抑制的潜在原因。

13C NMR evidence for pyruvate kinase flux attenuation underlying suppressed acid formation in Bacillus subtilis.

作者信息

Phalakornkule C, Fry B, Zhu T, Kopesel R, Ataai M M, Domach M M

机构信息

Department of Chemical Engineering, Biotechnology & Health Engineering Program, Carnegie Mellon University, Pittsburgh, Pennsylvania 15219, USA.

出版信息

Biotechnol Prog. 2000 Mar-Apr;16(2):169-75. doi: 10.1021/bp000007k.

Abstract

When batch and continuous Bacillus subtilis cultures are provided with a small amount of citrate, acid production ceases, carbon yield increases by more than 2-fold, and the productivity of recombinant protein increases. It has been hypothesized that pyruvate kinase activity is attenuated, which in turn lowers glucose flux and minimizes the acid overflow prompted by low Krebs cycle capacity. To complement existing enzyme activity, linear programming, and metabolite pool studies, (13)C NMR studies were performed. Atom mapping and isotopomer mapping matrix methods were used to select the best glucose label. "Best" was defined such that the NMR spectra of glutamate associated with metabolizing labeled glucose via the different candidate metabolic trafficking scenarios would differ considerably in fine structure (e.g., relative singlet intensities). When experiments were performed with 1-(13)C glucose, the observed NMR spectra corresponded well to the one predicted to arise when the metabolic trafficking occurs according to a pyruvate kinase attenuation scenario. This evidence further fortifies the prospects for successfully basing a metabolic engineering strategy on reducing pyruvate kinase activity to better match glycolytic and Krebs cycle capacities.

摘要

当给分批培养和连续培养的枯草芽孢杆菌提供少量柠檬酸盐时,产酸停止,碳产量增加两倍多,重组蛋白的生产力提高。据推测,丙酮酸激酶活性减弱,进而降低葡萄糖通量,并使因三羧酸循环能力低而导致的酸溢流降至最低。为补充现有的酶活性、线性规划和代谢物池研究,进行了碳-13核磁共振(¹³C NMR)研究。使用原子映射和同位素异构体映射矩阵方法来选择最佳的葡萄糖标记。“最佳”的定义是,通过不同候选代谢转运途径代谢标记葡萄糖时,谷氨酸的核磁共振谱在精细结构上(例如,相对单峰强度)会有很大差异。当用1-¹³C葡萄糖进行实验时,观察到的核磁共振谱与根据丙酮酸激酶减弱情况进行代谢转运时预测出现的谱图非常吻合。这一证据进一步增强了基于降低丙酮酸激酶活性以更好地匹配糖酵解和三羧酸循环能力来成功制定代谢工程策略的前景。

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