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[链霉菌负调控基因突变筛选系统的构建]

[Construction of screening system for mutation of negative regulatory genes in Streptomyces].

作者信息

Zhu Yu, Feng Chi, Tan Huarong, Tian Yuqing

机构信息

Institute of Microbiology, Chinese Academy of Sciences, Beijing 100101, China.

出版信息

Wei Sheng Wu Xue Bao. 2013 Oct 4;53(10):1031-42.

PMID:24409758
Abstract

OBJECTIVE

We aimed to create a novel report system for screening the mutation of the negative regulatory genes, especially for those repressing the expression of cryptic antibiotics clusters.

METHODS

We used marker-free gene disruption strategy, which combines with the "REDIRECT (Rapid Efficient Directed Recombination Time Saving)" technology and in vivo site-specific recombination by Streptomyces phage phiBT1 integrase, to construct a scbR2/inoA double mutant strain of S. coelicolor M145. This strain was used as the host of the report system. For the construction of the reporter plasmid, the ScbR2 repressed promoter of cpkO from CPK (cryptic polyketide) cluster was used to drive the expression of a promoterless conserved gene inoA of S. coelicolor. Then the reporter plasmid was introduced into the host strain described above to test the availability of inoA as a reporter gene in this system.

RESULTS

The scbR2/inoA double mutant strain gave rise to a bald pheno type on MM medium in the absence of inositol, and produced yellow pigmented secondary metabolite by the disruption of scbR2 to release the repression of cpkO, a pathway specific activator gene situated in CPK cluster. After introducing the reporter plasmid into this test stain, the resulting strain recovered the phenotype as wild-type strain, indicating that the promoter of cpkO can drive the expression of inoA in scbR2 mutant and consequently restore the biosynthesis of inositol.

CONCLUSION

Our results indicated that inoA can be used as a novel reporter gene for Streptomyces, especially for detecting the activation of the "silent" promoter. This report system might be available for screening the mutation of the negative regulatory genes for the cryptic secondary metabolic gene clusters.

摘要

目的

我们旨在创建一种新型报告系统,用于筛选负调控基因的突变,特别是那些抑制隐性抗生素簇表达的基因。

方法

我们采用无标记基因破坏策略,该策略与“REDIRECT(快速高效定向重组省时)”技术以及链霉菌噬菌体phiBT1整合酶介导的体内位点特异性重组相结合,构建了天蓝色链霉菌M145的scbR2/inoA双突变菌株。该菌株用作报告系统的宿主。为构建报告质粒,来自CPK(隐性聚酮化合物)簇的cpkO的ScbR2抑制型启动子用于驱动天蓝色链霉菌无启动子的保守基因inoA的表达。然后将报告质粒导入上述宿主菌株,以测试inoA作为该系统中报告基因的可用性。

结果

在缺乏肌醇的MM培养基上,scbR2/inoA双突变菌株产生光秃表型,并通过破坏scbR2释放位于CPK簇中的途径特异性激活基因cpkO的抑制作用,产生黄色色素的次级代谢产物。将报告质粒导入该测试菌株后,所得菌株恢复为野生型菌株的表型,表明cpkO的启动子可驱动scbR2突变体中inoA的表达,从而恢复肌醇的生物合成。

结论

我们的结果表明,inoA可作为链霉菌的新型报告基因,特别是用于检测“沉默”启动子的激活。该报告系统可能可用于筛选隐性次级代谢基因簇的负调控基因突变。

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