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采用大气压室温等离子体(ARTP)诱变、基因组改组和二甲亚砜(DMSO)补料策略提高吸水链霉菌中 FK506 的产量。

Combination of atmospheric and room temperature plasma (ARTP) mutagenesis, genome shuffling and dimethyl sulfoxide (DMSO) feeding to improve FK506 production in Streptomyces tsukubaensis.

机构信息

State Key Laboratory of Bioreactor Engineering, East China University of Science and Technology, 130 Meilong Road, Shanghai, 200237, China.

出版信息

Biotechnol Lett. 2021 Sep;43(9):1809-1820. doi: 10.1007/s10529-021-03154-6. Epub 2021 Jun 23.

DOI:10.1007/s10529-021-03154-6
PMID:34160747
Abstract

FK506 is a clinically important macrocyclic polyketide with immunosuppressive activity produced by Streptomyces tsukubaensis. However, the production capacity of the strain is very low. To improve production, atmospheric and room temperature plasma (ARTP) mutagenesis was adopted to get the initial strains used in genome shuffling (GS). After three rounds of GS, S. tsukubaensis R3-C4 was the most productive strain, resulting in a FK506 concentration of 335 μg/mL, 2.6 times than that of the original wild-type strain. Moreover, exogenous DMSO 4% (v/v) addition could induce efflux of FK506 and increased FK506 production by 27.9% to 429 μg/mL. Finally, analyses of the differences in morphology, fermentation characteristics and specific gene expression levels between S. tsukubaensis R3-C4 and the wild-type strain revealed that R3-C4 strain: has hampered spore differentiation, thicker mycelia and more red pigment, which are likely related to the downregulation of bldD and cdgB expression. In addition, the expression levels of fkbO, fkbP, dahp, pccB and prpE all showed up-regulation at diverse degrees compared to the wild-type S. tsukubaensis. Overall, these results show that a combined approach involving classical random mutation and exogenous feeding can be applied to increase FK506 biosynthesis and may be applied also to the improvement of other important secondary metabolites.

摘要

FK506 是一种具有免疫抑制活性的临床重要大环多酮类化合物,由链霉菌属 tsukubaensis 产生。然而,该菌株的生产能力非常低。为了提高产量,采用常压室温等离子体(ARTP)诱变获得了基因组改组(GS)中使用的初始菌株。经过三轮 GS,S. tsukubaensis R3-C4 是最具生产力的菌株,FK506 浓度达到 335μg/mL,比原始野生型菌株提高了 2.6 倍。此外,添加 4%(v/v)的外源 DMSO 可以诱导 FK506 外排,使 FK506 产量增加 27.9%至 429μg/mL。最后,通过分析 S. tsukubaensis R3-C4 与野生型菌株在形态、发酵特性和特定基因表达水平上的差异,发现 R3-C4 菌株:阻碍了孢子分化,菌丝较厚,红色素较多,这可能与 bldD 和 cdgB 表达下调有关。此外,fkbO、fkbP、dahp、pccB 和 prpE 的表达水平与野生型 S. tsukubaensis 相比均表现出不同程度的上调。总的来说,这些结果表明,经典的随机突变和外源添加的组合方法可用于提高 FK506 的生物合成,也可用于其他重要次生代谢物的改良。

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