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Finding potential novel Fur targets –a case study.
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创建时间:
2015-12-02
相关数据集
The novel type II toxin-antitoxin PacTA modulates Pseudomonas aeruginosa iron homeostasis by obstructing the DNA-binding activity of Fur
The novel type II toxin-antitoxin PacTA modulates Pseudomonas aeruginosa iron homeostasis by obstructing the DNA-binding activity of Fur
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Two transcription factors are necessary for iron homeostasis in a salt-dwelling archaeon [ChIP-chip data]
Because iron toxicity and deficiency are equally life threatening, maintaining intracellular iron levels within a narrow optimal range is critical for nearly all known organisms. However, regulatory m
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Table_3_MliR, a novel MerR-like regulator of iron homeostasis, impacts metabolism, membrane remodeling, and cell adhesion in the marine Bacteroidetes Bizionia argentinensis.pdf
The MerR family is a group of transcriptional activators with conserved N-terminal helix-turn-helix DNA binding domains and variable C-terminal effector binding regions. In most MerR proteins the effe
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The Graded Response of Fur Regulon to Iron Limitation in Bacillus subtilis. Bacillus subtilis
Bacterial cells often modulate their transcriptional profiles in response to the changes in iron availability. Ferric uptake regulator (Fur), as a global iron biosensor, plays a central role in mainta
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Influence of the Hfq and Crc global regulators on the control of iron homeostasis in Pseudomonas putida. Influence of the Hfq and Crc global regulators on the control of iron homeostasis in Pseudomonas putida
Metabolically versatile bacteria use catabolite repression control to select their preferred carbon sources, thus optimizing carbon metabolism. In pseudomonads, this occurs through the combined action
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