Shi Shuobo, Chen Tao, Zhang Zhigang, Chen Xun, Zhao Xueming
Department of Biochemical Engineering, School of Chemical Engineering and Technology, Tianjin University, Tianjin 300072, China.
Metab Eng. 2009 Jul-Sep;11(4-5):243-52. doi: 10.1016/j.ymben.2009.05.002. Epub 2009 May 13.
A comparative transcriptome profiling between a riboflavin-producing Bacillus subtilis strain RH33 and the wild-type strain B. subtilis 168 was performed, complemented with metabolite pool and nucleotide sequence analysis, to rationally identify new targets for improving riboflavin production. The pur operon (purEKBCSQLFMNHD) together with other PurR-regulated genes (glyA, guaC, pbuG, xpt-pbuX, yqhZ-folD, and pbuO) was all down-regulated in RH33, which consequently limited the supply of the riboflavin precursors. As 5-phospho-ribosyl-1(a)-pyrophosphate (PRPP) strongly inhibits the binding of PurR to its targets, it was inferred that the reduced expression of PurR-regulated genes might be caused by a low PRPP pool, which was subsequently confirmed by metabolite analysis. Thus, we selected and co-overexpressed prs and ywlF genes in RH33, which are involved in the biosynthetic pathway of PRPP from ribulose-5-phosphate. This co-amplification led to an elevated PRPP pool and thus the increased transcript abundances of PurR-regulated genes participated in riboflavin precursor biosynthesis. The riboflavin titer was increased by 25% (up to 15 g l(-1)) in fed-batch fermentation.
对产核黄素的枯草芽孢杆菌菌株RH33和野生型菌株枯草芽孢杆菌168进行了比较转录组分析,并辅以代谢物库和核苷酸序列分析,以合理确定提高核黄素产量的新靶点。嘌呤操纵子(purEKBCSQLFMNHD)以及其他受PurR调控的基因(glyA、guaC、pbuG、xpt-pbuX、yqhZ-folD和pbuO)在RH33中均下调,这最终限制了核黄素前体的供应。由于5-磷酸核糖-1(α)-焦磷酸(PRPP)强烈抑制PurR与其靶点的结合,因此推测PurR调控基因表达降低可能是由于PRPP库水平较低,随后的代谢物分析证实了这一点。因此,我们在RH33中选择并共过表达了参与从5-磷酸核酮糖生物合成PRPP途径的prs和ywlF基因。这种共扩增导致PRPP库水平升高,从而增加了参与核黄素前体生物合成的PurR调控基因的转录丰度。在补料分批发酵中,核黄素产量提高了25%(达到15 g l(-1))。