Amylase Binding to Oral Streptococci: A Key Interaction for Human Oral Microbial Ecology, Adaptation and Fitness. [PDF]
Sabharwal A, Haase EM, Scannapieco FA.
europepmc +1 more source
Analysis of Putative CzcR Targets Under Zinc Sufficiency and Zinc Excess Conditions in <i>Pseudomonas aeruginosa</i> Using ChIP-Seq. [PDF]
Mauffrey F +3 more
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Molecular Characterization of the Group A Streptococcus Virulence-Regulatory System FasBCAX. [PDF]
Baral S +9 more
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Structural properties and asymptotic behavior of bacterial two-component systems. [PDF]
Zorzan I +3 more
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Elucidating the mechanism of thiosulfate oxidation by a novel two-component system SulRS in deep-sea <i>Campylobacterota</i>. [PDF]
Zhong Y +10 more
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Regulation of Amino Acid Transporters by Cell Surface Receptors. [PDF]
Brignola C +8 more
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Structural Characterization of the Predominant Family of Histidine Kinase Sensor Domains [PDF]
Histidine kinase (HK) receptors are used ubiquitously by bacteria to monitor environmental changes, and they are also prevalent in plants, fungi, and other protists. Typical HK receptors have an extracellular sensor portion that detects a signal, usually a chemical ligand, and an intracellular transmitter portion that includes both the kinase domain ...
Wayne A Hendrickson
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Bacterial histidine kinase as signal sensor and transducer
The International Journal of Biochemistry & Cell Biology, 2006Adaptation to an environmental stress is essential for cell survival in all organisms, from E. coli to human. To respond to changes in their surroundings, bacteria utilize two-component systems (TCSs), also known as histidyl-aspartyl phosphorelay (HAP) systems that consist of a histidine kinase (HK) sensor and a cognate response regulator (RR).
Ahmad, Khorchid, Mitsuhiko, Ikura
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Ligand-Induced Asymmetry in Histidine Sensor Kinase Complex Regulates Quorum Sensing [PDF]
Bacteria sense their environment using receptors of the histidine sensor kinase family, but how kinase activity is regulated by ligand binding is not well understood. Autoinducer-2 (AI-2), a secreted signaling molecule originally identified in studies of the marine bacterium Vibrio harveyi, regulates quorum-sensing responses and allows communication ...
Bonnie Bassler +2 more
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