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Department of Biology
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Thanks, Charley.
Journal of bacteriology Apr, 2002 | Pubmed ID: 11914336
A NarX-Tar chimera mediates repellent chemotaxis to nitrate and nitrite.
Molecular microbiology May, 2002 | Pubmed ID: 11994152
CheZ phosphatase localizes to chemoreceptor patches via CheA-short.
Journal of bacteriology Apr, 2003 | Pubmed ID: 12644507
A sensitive, versatile microfluidic assay for bacterial chemotaxis.
Proceedings of the National Academy of Sciences of the United States of America Apr, 2003 | Pubmed ID: 12704234
Rusty, jammed, and well-oiled hinges: Mutations affecting the interdomain region of FliG, a rotor element of the Escherichia coli flagellar motor.
Journal of bacteriology May, 2004 | Pubmed ID: 15126479
Tryptophan residues flanking the second transmembrane helix (TM2) set the signaling state of the Tar chemoreceptor.
Biochemistry Feb, 2005 | Pubmed ID: 15667220
Cooperative signaling among bacterial chemoreceptors.
Biochemistry Nov, 2005 | Pubmed ID: 16245946
Mutationally altered signal output in the Nart (NarX-Tar) hybrid chemoreceptor.
Journal of bacteriology Jun, 2006 | Pubmed ID: 16707686
The Escherichia coli MotAB proton channel unplugged.
Journal of molecular biology Dec, 2006 | Pubmed ID: 17052729
How 34 pegs fit into 26 + 8 holes in the flagellar motor.
Journal of bacteriology Jan, 2007 | Pubmed ID: 17085552
Tuning a bacterial chemoreceptor with protein-membrane interactions.
Biochemistry Dec, 2006 | Pubmed ID: 17144658
Clusters of charged residues at the C terminus of MotA and N terminus of MotB are important for function of the Escherichia coli flagellar motor.
Journal of bacteriology Aug, 2008 | Pubmed ID: 18469110
The tie that binds the dynamic duo: the connector between AS1 and AS2 in the HAMP domain of the Escherichia coli Tsr chemoreceptor.
Journal of bacteriology Oct, 2008 | Pubmed ID: 18708501
The region preceding the C-terminal NWETF pentapeptide modulates baseline activity and aspartate inhibition of Escherichia coli Tar.
Biochemistry Dec, 2008 | Pubmed ID: 19053273
Flow-based microfluidic device for quantifying bacterial chemotaxis in stable, competing gradients.
Applied and environmental microbiology Jul, 2009 | Pubmed ID: 19411425
Protein domains and residues involved in the CheZ/CheAS interaction.
Journal of bacteriology Sep, 2009 | Pubmed ID: 19542283
A grand view of the flagellar motor.
Journal of bacteriology Aug, 2009 | Pubmed ID: 19542284
A mutational wrench in the HAMP gearbox.
Molecular microbiology Sep, 2009 | Pubmed ID: 19678895
Microfluidic techniques for the analysis of bacterial chemotaxis.
Methods in molecular biology (Clifton, N.J.) , 2009 | Pubmed ID: 19763956
Repellent taxis in response to nickel ion requires neither Ni2+ transport nor the periplasmic NikA binding protein.
Journal of bacteriology May, 2010 | Pubmed ID: 20233931
Investigation of bacterial chemotaxis in flow-based microfluidic devices.
Nature protocols , 2010 | Pubmed ID: 20431532
Dynamic motors for bacterial flagella.
Proceedings of the National Academy of Sciences of the United States of America Jun, 2010 | Pubmed ID: 20543140
Mutational analysis of the transmembrane helix 2-HAMP domain connection in the Escherichia coli aspartate chemoreceptor tar.
Journal of bacteriology Jan, 2011 | Pubmed ID: 20870768
Chemotaxis to the quorum-sensing signal AI-2 requires the Tsr chemoreceptor and the periplasmic LsrB AI-2-binding protein.
Journal of bacteriology Feb, 2011 | Pubmed ID: 21097621
Not too loose, not too tight--just right. Biphasic control of the Tsr HAMP domain.
Molecular microbiology May, 2011 | Pubmed ID: 21355897
Transmembrane signaling is anything but rigid.
Journal of bacteriology Oct, 2011 | Pubmed ID: 21803989
Texas A&M University
Derek L. Englert1,
Michael D. Manson2,
Arul Jayaraman1,3
1McFerrin Department of Chemical Engineering, Texas A&M University,
2Department of Biology, Texas A&M University,
3Department of Biomedical Engineering, Texas A&M University
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