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Expression of the Streptomyces coelicolor SoxR Regulon Is Intimately Linked with Actinorhodin Production

机译:链霉菌coelicolor SoxR Regulon的表达与放线菌素生产密切相关。

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摘要

The [2Fe-2S]-containing transcription factor SoxR is conserved in diverse bacteria. SoxR is traditionally known as the regulator of a global oxidative stress response in Escherichia coli, but recent studies suggest that this function may be restricted to enteric bacteria. In the vast majority of nonenterics, SoxR is predicted to mediate a response to endogenously produced redox-active metabolites. We have examined the regulation and function of the SoxR regulon in the model antibiotic-producing filamentous bacterium Streptomyces coelicolor. Unlike the E. coli soxR deletion mutant, the S. coelicolor equivalent is not hypersensitive to oxidants, indicating that SoxR does not potentiate antioxidant defense in the latter. SoxR regulates five genes in S. coelicolor, including those encoding a putative ABC transporter, two oxidoreductases, a monooxygenase, and a possible NAD-dependent epimerase/dehydratase. Expression of these genes depends on the production of the benzochromanequinone antibiotic actinorhodin and requires intact [2Fe-2S] clusters in SoxR. These data indicate that actinorhodin, or a redox-active precursor, modulates SoxR activity in S. coelicolor to stimulate the production of a membrane transporter and proteins with homology to actinorhodin-tailoring enzymes. While the role of SoxR in S. coelicolor remains under investigation, these studies support the notion that SoxR has been adapted to perform distinct physiological functions to serve the needs of organisms that occupy different ecological niches and face different environmental challenges.
机译:含有[2Fe-2S]的转录因子SoxR在各种细菌中均是保守的。传统上,SoxR是大肠杆菌中整体氧化应激反应的调节剂,但最近的研究表明,该功能可能仅限于肠细菌。在绝大多数非肠溶性药物中,预计SoxR会介导对内源性氧化还原活性代谢产物的反应。我们已经检查了在产生抗生素的模型丝状细菌天蓝色链霉菌中SoxR调节子的调控和功能。与大肠杆菌soxR缺失突变体不同,天蓝色链霉菌等效物对氧化剂不敏感,表明SoxR不能增强后者的抗氧化防御能力。 SoxR调节天蓝色链霉菌中的五个基因,包括编码假定的ABC转运蛋白,两个氧化还原酶,单加氧酶和可能的NAD依赖差向异构酶/脱水酶的基因。这些基因的表达取决于苯并苯并醌醌抗生素放线菌丝蛋白的产生,并且需要SoxR中完整的[2Fe-2S]簇。这些数据表明,肌动蛋白或氧化还原活性的前体可调节天蓝色链霉菌中的SoxR活性,从而刺激膜转运蛋白和与肌动蛋白定型酶具有同源性的蛋白质的产生。尽管尚在研究SoxR在天蓝色链霉菌中的作用,但这些研究支持这样的观点,即SoxR已适应于执行独特的生理功能,以满足占据不同生态位和面临不同环境挑战的生物的需求。

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