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The Unconventional Cytoplasmic Sensing Mechanism for Ethanol Chemotaxis in Bacillus subtilis
Payman Tohidifar
, Girija A. Bodhankar
, Sichong Pei
, C. Keith Cassidy
,
Hanna E. Walukiewicz
, George W. Ordal
, Phillip J. Stansfeld
,
Christopher V. Rao
Chemical and Biomolecular Engineering
Biochemistry
Carl R. Woese Institute for Genomic Biology
Beckman Institute for Advanced Science and Technology
Materials Research Lab
Biomedical and Translational Sciences
Research output
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Contribution to journal
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Article
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peer-review
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Keyphrases
Ethanol
100%
Sensing Mechanism
100%
Bacillus Subtilis (B. subtilis)
100%
Chemotaxis
100%
Cytoplasmic Sensing
100%
Signaling Domain
60%
Sensing Domain
46%
B.subtilis
26%
Chemoreceptor
26%
Alcohol
20%
Helix
20%
Cytoplasmic Signalling
20%
Myoglobin
13%
Heme Group
13%
Chemoattractant
13%
Attractant
13%
Short-chain Alcohols
13%
Extracellular Sensing
13%
Molecular Dynamics Simulation
6%
Amino Acid Residues
6%
Chemical Gradient
6%
Microorganisms
6%
Binding Protein
6%
Membrane Receptors
6%
Coiled Coil
6%
Single Amino Acid
6%
Producing Microorganisms
6%
Ting
6%
Unconventional Function
6%
Motile Bacteria
6%
Biochemistry, Genetics and Molecular Biology
Chemotaxis
100%
Chemoreceptor
100%
Microorganism
50%
Prey
50%
Serine
50%
Myoglobin
50%
Amino Acids
25%
Binding Protein
25%
Transmembrane Receptors
25%
Coiled Coil
25%