Nitric oxide (NO) signaling controls various metabolic pathways in bacteria and higher eukaryotes. Cellular enzymes synthesize and detoxify NO; however, a mechanism that controls its cellular homeostasis has not been identified. Here, we found a nitrogen oxide cycle involving nitrate reductase (Nar) and the NO dioxygenase flavohemoglobin (Fhb), that facilitate inter-conversion of nitrate, nitrite, and NO in the actinobacterium Streptomyces coelicolor. This cycle regulates cellular NO levels, bacterial antibiotic production, and morphological differentiation. NO down-regulates Nar and up-regulates Fhb gene expression via the NO-dependent transcriptional factors DevSR and NsrR, respectively, which are involved in the auto-regulation mechanism of intracellular NO levels. Nitrite generated by the NO cycles induces gene expression in neighboring cells, indicating an additional role of the cycle as a producer of a transmittable inter-cellular communication molecule.
Nitrogen oxide cycle regulates nitric oxide levels and bacterial cell signaling.
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作者:Sasaki Yasuyuki, Oguchi Haruka, Kobayashi Takuya, Kusama Shinichiro, Sugiura Ryo, Moriya Kenta, Hirata Takuya, Yukioka Yuriya, Takaya Naoki, Yajima Shunsuke, Ito Shinsaku, Okada Kiyoshi, Ohsawa Kanju, Ikeda Haruo, Takano Hideaki, Ueda Kenji, Shoun Hirofumi
| 期刊: | Scientific Reports | 影响因子: | 3.900 |
| 时间: | 2016 | 起止号: | 2016 Feb 25; 6:22038 |
| doi: | 10.1038/srep22038 | ||
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