阿维链霉菌
生物
次生代谢
氧化应激
调节器
细胞生物学
链霉菌
新陈代谢
活性氧
生物化学
遗传学
基因
生物合成
细菌
作者
Yaqing Cheng,Renjun Yang,Mengya Lyu,Shiwei Wang,Xingchao Liu,Ying Wen,Yuan Song,Jilun Li,Zhi Chen
摘要
Iron is essential to almost all organisms, but in the presence of oxygen, iron is both poorly available and potentially toxic. Streptomyces species are predominantly present in soil where the environment is complex and fluctuating. So far, the mechanism of iron homeostasis in Streptomyces spp. remains to be elucidated. Here, we characterized the regulatory role of IdeR in the avermectin-producing organism S. avermitilis . IdeR maintains intracellular iron levels by regulating genes involved in iron absorption and storage. IdeR also directly regulates morphological differentiation, secondary metabolism, and central metabolism. ideR is under the positive control of OxyR and is indispensable for an efficient response to oxidative stress. This investigation uncovered that IdeR acts as a global regulator coordinating iron homeostasis, morphological differentiation, secondary metabolism, and oxidative stress response in Streptomyces species. Elucidation of the pleiotropic regulation function of IdeR provides new insights into the mechanisms of how Streptomyces spp. adapt to the complex environment.
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