A dynamic-signaling-team model for chemotaxis receptors in Escherichia coli
about
The role of membrane-mediated interactions in the assembly and architecture of chemoreceptor latticesProtein Connectivity in Chemotaxis Receptor ComplexesNon-monotonic dynamics and crosstalk in signaling pathways and their implications for pharmacologyNetworked Chemoreceptors Benefit Bacterial Chemotaxis PerformanceInformation processing in bacteria: memory, computation, and statistical physics: a key issues reviewDefining a key receptor-CheA kinase contact and elucidating its function in the membrane-bound bacterial chemosensory array: a disulfide mapping and TAM-IDS Study.Lateral density of receptor arrays in the membrane plane influences sensitivity of the E. coli chemotaxis response.Fundamental constraints on the abundances of chemotaxis proteinsResponding to chemical gradients: bacterial chemotaxisChemotactic adaptation kinetics of individual Escherichia coli cells.Preformed Soluble Chemoreceptor Trimers That Mimic Cellular Assembly States and Activate CheA AutophosphorylationThe source of high signal cooperativity in bacterial chemosensory arraysExcitation and adaptation in bacteria-a model signal transduction system that controls taxis and spatial pattern formationTheoretical insights into bacterial chemotaxis.Isolated bacterial chemosensory array possesses quasi- and ultrastable components: functional links between array stability, cooperativity, and order.Mechanism of bidirectional thermotaxis in Escherichia coli.A dynamic complex of signaling proteins uses polar localization to regulate cell-fate asymmetry in Caulobacter crescentusProtein logic: a statistical mechanical study of signal integration at the single-molecule level.Universal response-adaptation relation in bacterial chemotaxis.Positioning of chemosensory proteins and FtsZ through the Rhodobacter sphaeroides cell cycle.Ultrasensitivity in independent multisite systems.Multiple sources of slow activity fluctuations in a bacterial chemosensory network.Mathematical Analysis of the Escherichia coli Chemotaxis Signalling Pathway.Fold-change detection in a whole-pathway model of Escherichia coli chemotaxis.Cell orientation of swimming bacteria: from theoretical simulation to experimental evaluation.Prolonged stimuli alter the bacterial chemosensory clusters.Opposite responses by different chemoreceptors set a tunable preference point in Escherichia coli pH taxis.
P2860
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P2860
A dynamic-signaling-team model for chemotaxis receptors in Escherichia coli
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2010 nî lūn-bûn
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2010 թուականի Սեպտեմբերին հրատարակուած գիտական յօդուած
@hyw
2010 թվականի սեպտեմբերին հրատարակված գիտական հոդված
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A dynamic-signaling-team model for chemotaxis receptors in Escherichia coli
@ast
A dynamic-signaling-team model for chemotaxis receptors in Escherichia coli
@en
A dynamic-signaling-team model for chemotaxis receptors in Escherichia coli
@nl
type
label
A dynamic-signaling-team model for chemotaxis receptors in Escherichia coli
@ast
A dynamic-signaling-team model for chemotaxis receptors in Escherichia coli
@en
A dynamic-signaling-team model for chemotaxis receptors in Escherichia coli
@nl
prefLabel
A dynamic-signaling-team model for chemotaxis receptors in Escherichia coli
@ast
A dynamic-signaling-team model for chemotaxis receptors in Escherichia coli
@en
A dynamic-signaling-team model for chemotaxis receptors in Escherichia coli
@nl
P2860
P356
P1476
A dynamic-signaling-team model for chemotaxis receptors in Escherichia coli
@en
P2093
Clinton H Hansen
Ned S Wingreen
P2860
P304
17170-17175
P356
10.1073/PNAS.1005017107
P407
P577
2010-09-20T00:00:00Z