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首页> 外文期刊>Frontiers in Microbiology >Bidirectional Regulation of AdpA ch in Controlling the Expression of scnRI and scnRII in the Natamycin Biosynthesis of Streptomyces chattanoogensis L10
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Bidirectional Regulation of AdpA ch in Controlling the Expression of scnRI and scnRII in the Natamycin Biosynthesis of Streptomyces chattanoogensis L10

机译:AdpA ch 的双向调控在纳他霉素生物合成链霉菌产链蛋白L10的纳他霉素生物合成中控制 scnRI scnRII 的表达。

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摘要

AdpA, an AraC/XylS family protein, had been proved as a key regulator for secondary metabolism and morphological differentiation in Streptomyces griseus . Here, we identify AdpA_(ch), an ortholog of AdpA, as a “higher level” pleiotropic regulator of natamycin biosynthesis with bidirectional regulatory ability in Streptomyces chattanoogensis L10. DNase I footprinting revealed six AdpA_(ch)-binding sites in the scnRI – scnRII intergenic region. Further analysis using the xylE reporter gene fused to the scnRI – scnRII intergenic region of mutated binding sites demonstrated that the expression of scnRI and scnRII was under the control of AdpA_(ch). AdpA_(ch)showed a bi-stable regulatory ability where it firstly binds to the Site C and Site D to activate the transcription of the two pathway-specific genes, scnRI and scnRII , and then binds to other sites where it acts as an inhibitor. When Site A and Site F were mutated in vivo , the production of natamycin was increased by 21% and 25%, respectively. These findings indicated an autoregulatory mechanism where AdpA_(ch)serves as a master switch with bidirectional regulation for natamycin biosynthesis.
机译:AdpA,一种AraC / XylS家族蛋白,已被证明是灰链霉菌次级代谢和形态分化的关键调节剂。在这里,我们确定AdpA的直系同源物AdpA_(ch)是纳他霉素生物合成的“更高水平”的多效调节剂,在链霉菌L10中具有双向调节能力。 DNase I足迹显示在scnRI – scnRII基因间区域中有六个AdpA_(ch)结合位点。使用融合到突变结合位点的scnRI – scnRII基因间区域的xylE报告基因进行的进一步分析表明,scnRI和scnRII的表达受AdpA_(ch)的控制。 AdpA_(ch)显示出双稳态调节能力,其中它首先与位点C和位点D结合以激活两个途径特异性基因scnRI和scnRII的转录,然后结合到其作为抑制剂的其他位点。当位点A和位点F在体内发生突变时,纳他霉素的产量分别增加了21%和25%。这些发现表明了一种自动调节机制,其中AdpA_(ch)用作纳他霉素生物合成的双向调节主开关。

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