Species-Independent Attraction to Biofilms through Electrical Signaling

scientific article published on 12 January 2017

Species-Independent Attraction to Biofilms through Electrical Signaling is …
instance of (P31):
scholarly articleQ13442814

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P356DOI10.1016/J.CELL.2016.12.014
P932PMC publication ID5497501
P698PubMed publication ID28086091

P50authorJintao LiuQ41045394
Lev TsimringQ83243454
P2093author name stringArthur Prindle
Fang Yuan
Gürol M Süel
Liyang Xiong
Heidi A Arjes
Jacqueline Humphries
P2860cites workStreaming instability in growing cell populationsQ21706567
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Ion channels enable electrical communication in bacterial communitiesQ27315080
Metabolic co-dependence gives rise to collective oscillations within biofilms.Q27316145
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Chemotaxis in Escherichia coli analysed by Three-dimensional TrackingQ29616618
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The K+ uptake regulator TrkA controls membrane potential, pH homeostasis and multidrug susceptibility in Mycobacterium smegmatisQ33912352
A regulatory RNA required for antitermination of biofilm and capsular polysaccharide operons in BacillalesQ34108984
Protonmotive force and bacterial sensingQ34109638
Dynamics of a tightly coupled mechanism for flagellar rotation. Bacterial motility, chemiosmotic coupling, protonmotive forceQ34261411
Biochemical and genetic characterization of a competence pheromone from B. subtilisQ34340166
MstX and a putative potassium channel facilitate biofilm formation in Bacillus subtilisQ34758361
A protonmotive force drives bacterial flagellaQ35038979
Sensory electrophysiology of bacteria: relationship of the membrane potential to motility and chemotaxis in Bacillus subtilis.Q35059534
Robust perfect adaptation in bacterial chemotaxis through integral feedback controlQ35689729
Transduction in Bacillus subtilis by bacteriophage SPP1.Q36566628
Biomechanical ordering of dense cell populationsQ36926950
The Ktr potassium transport system in Staphylococcus aureus and its role in cell physiology, antimicrobial resistance and pathogenesisQ37125647
Proton-motive force and the motile behavior of Bacillus subtilisQ39135226
Protonmotive force and motility of Bacillus subtilisQ39188612
Characterization of the Bacillus subtilis motile system driven by an artificially created proton motive forceQ39282298
Regulation of cytoplasmic pH in bacteriaQ39840875
Effects of potassium ions on proton motive force in Rhodobacter sphaeroidesQ39955121
Interconversion of components of the bacterial proton motive force by electrogenic potassium transportQ39970793
Quantitative measurements of proton motive force and motility in Bacillus subtilisQ40338504
Slow fluorescent indicators of membrane potential: a survey of different approaches to probe response analysis.Q41022253
The proton flux through the bacterial flagellar motorQ41371119
Nonequivalence of membrane voltage and ion-gradient as driving forces for the bacterial flagellar motor at low load.Q42592857
NAD+ binding to the Escherichia coli K(+)-uptake protein TrkA and sequence similarity between TrkA and domains of a family of dehydrogenases suggest a role for NAD+ in bacterial transportQ42618048
Transcriptome analysis documents induced competence of Bacillus subtilis during nitrogen limiting conditionsQ43868808
The oligopeptide transport system of Bacillus subtilis plays a role in the initiation of sporulationQ48240475
Languages and dialects: bacterial communication beyond homoserine lactonesQ57969988
P4510describes a project that usesImageJQ1659584
P433issue1-2
P407language of work or nameEnglishQ1860
P921main subjectbiofilmQ467410
P304page(s)200-209.e12
P577publication date2017-01-12
P1433published inCellQ655814
P1476titleSpecies-Independent Attraction to Biofilms through Electrical Signaling
P478volume168

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