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精胺和 1,3-二氨基丙烷对高产菌株头孢菌素 C 生物合成的最后阶段有相反的影响。

Spermidine and 1,3-Diaminopropane Have Opposite Effects on the Final Stage of Cephalosporin C Biosynthesis in High-Yielding Strain.

机构信息

Group of Fungal Genetic Engineering, Federal Research Center "Fundamentals of Biotechnology" of the Russian Academy of Sciences, Leninsky Prosp. 33-2, 119071 Moscow, Russia.

出版信息

Int J Mol Sci. 2022 Nov 23;23(23):14625. doi: 10.3390/ijms232314625.

Abstract

The addition of exogenous polyamines increases the production of antibiotic cephalosporin C (CPC) in high-yielding (HY) strain during fermentation on a complex medium. However, the molecular basis of this phenomenon is still unknown. In the current study, we developed a special synthetic medium on which we revealed the opposite effect of polyamines. The addition of 1,3-diaminopropane resulted in an increase in the yield of CPC by 12-15%. However, the addition of spermidine resulted in a decrease in the yield of CPC by 14-15% and accumulation of its metabolic pathway precursor, deacetylcephalosporin C (DAC); the total amount of cephems (DAC and CPC) was the same as after the addition of DAP. This indicates that spermidine, but not 1,3-diaminopropane, affects the final stage of CPC biosynthesis, associated with the acetylation of its precursor. In both cases, upregulation of biosynthetic genes from beta-lactam BGCs occurred at the same level as compared to the control; expression of transport genes was at the control level. The opposite effect may be due to the fact that N-acetylation is much more efficient during spermidine catabolism than for 1,3-diaminopropane. The addition of spermidine, but not 1,3-diaminopropane, depleted the pool of acetyl coenzyme A by more than two-fold compared to control, which could lead to the accumulation of DAC.

摘要

外源性多胺的添加会增加高产(HY)菌株在复杂培养基发酵中抗生素头孢菌素 C(CPC)的产量。然而,这一现象的分子基础仍不清楚。在本研究中,我们开发了一种特殊的合成培养基,揭示了多胺的相反作用。1,3-二氨基丙烷的添加使 CPC 的产量增加了 12-15%。然而,亚精胺的添加使 CPC 的产量减少了 14-15%,并积累了其代谢途径的前体,去乙酰头孢菌素 C(DAC);头孢菌素(DAC 和 CPC)的总量与添加 DAP 后相同。这表明,亚精胺而不是 1,3-二氨基丙烷,影响 CPC 生物合成的最后阶段,与前体的乙酰化有关。在这两种情况下,与对照相比,β-内酰胺 BGC 的生物合成基因的上调水平相同;转运基因的表达处于对照水平。相反的效果可能是由于亚精胺的 N-乙酰化在代谢过程中比 1,3-二氨基丙烷效率更高。与对照相比,亚精胺的添加使乙酰辅酶 A 池减少了两倍以上,这可能导致 DAC 的积累。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/ae16/9738377/28bf1e017fc1/ijms-23-14625-g001.jpg

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