首页> 外文期刊>Journal of microbiology and biotechnology >Effects of Increased NADPH Concentration by Metabolic Engineering of the Pentose Phosphate Pathway on Antibiotic Production and Sporulation in Streptomyces lividans TK24
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Effects of Increased NADPH Concentration by Metabolic Engineering of the Pentose Phosphate Pathway on Antibiotic Production and Sporulation in Streptomyces lividans TK24

机译:NADPH浓度增加对磷酸磷酸盐途径对抗生素生产和孢子菌的抗生素TK24抗生素生产和孢子的影响

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摘要

Most of the biosynthetic pathways for secondary metabolites are influenced by carbon metabolism and supply of cytosolic NADPH. We engineered carbon distribution to the pentose phosphate pathway (PPP) and redesigned the host to produce high levels of NADPH and primary intermediates from the PPP. The main enzymes producing NADPH in the PPP, glucose 6-phosphate dehydrogenase (encoded by zwf1 and zwf2) and 6-phosphogluconate dehydrogenase (encoded by zwf3), were overexpressed with opc encoding a positive allosteric effector essential for Zwf activity in various combinations in Streptomyces lividans TK24. Most S. lividans transformants showed better cell growth and higher concentration of cytosolic NADPH than those of the control, and S. lividans TK24/pWHM3-Z23O2 containing zwf2+zwf3+opc2 showed the highest NADPH concentration but poor sporulation in R2YE medium. S. lividans TK24/pWHM3-Z23O2 in minimal medium showed the maximum growth (6.2 mg/ml) at day 4. Thereafter, a gradual decrease of biomass and a sharp increase of cytosolic NADPH and sedoheptulose 7-phosphate between days 2 and 4 and between days 1 and 3, respectively, were observed. Moreover, S. lividans TK24/pWHM3-Z23O2 produced 0.9 times less actinorhodin but 1.8 times more undecylprodigiosin than the control. These results suggested that the increased NADPH concentration and various intermediates from the PPP specifically triggered undecylprodigiosin biosynthesis that required many precursors and NADPH-dependent reduction reaction. This study is the first report on bespoke metabolic engineering of PPP routes especially suitable for producing secondary metabolites that need diverse primary precursors and NADPH, which is useful information for metabolic engineering in Streptomyces.
机译:次生代谢物的大多数生物合成途径受碳代谢和细胞溶质NADPH的影响。我们向戊糖磷酸途径(PPP)设计了碳分布,并重新设计了宿主以产生高水平的PPP NADPH和初级中间体。在PPP中产生NADPH的主要酶,葡萄糖6-磷酸脱氢酶(由ZWF1和ZWF2编码)和6-磷光葡萄糖酸脱氢酶(ZWF3编码),其过表达OPC编码ZWF活性在链霉菌中的各种组合中的ZWF活性是必不可少的Lividans TK24。大多数S. Lividans转化体表现出比对照的更好的细胞生长和更高浓度的细胞溶质NADPH,含有ZWF2 + ZWF3 + OPC2的S.Lividans TK24 / PWHM3-Z23O2显示出最高的NADPH浓度,但R2YE培养基中的孢子状差。 S. Lividans TK24 / PWHM3-Z23O2在最小培养基中显示第4天的最大生长(6.2mg / mL),其后,生物质的逐渐减少,细胞溶质NADPH和Sedoheptulose 7-磷酸盐的急剧增加,2至4天和4天观察到在第1天和第3天之间。此外,S.Lividans TK24 / PWHM3-Z23O2产生了0.9倍的actinorhodin,但比对照组的1.8倍。这些结果表明,来自PPP的NADPH浓度和各种中间体的特异性触发了未释放的undylprodigios蛋白生物合成,所以需要许多前体和依赖于NADPH依赖性反应。本研究是PPP途径定位代谢工程的第一个特别适用于产生需要不同的原发性前体和NADPH的二次代谢物,这是用于链霉菌的代谢工程的有用信息。

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