Membrane binding of MinE allows for a comprehensive description of Min-protein pattern formation
about
The Min system and other nucleoid-independent regulators of Z ring positioningMolecular Interactions of the Min Protein System Reproduce Spatiotemporal Patterning in Growing and Dividing Escherichia coli CellsTheoretical Prediction of Disrupted Min Oscillation in Flattened Escherichia coli.Membrane-bound MinDE complex acts as a toggle switch that drives Min oscillation coupled to cytoplasmic depletion of MinD.An Optimal Free Energy Dissipation Strategy of the MinCDE Oscillator in Regulating Symmetric Bacterial Cell DivisionThe bacterial divisome: ready for its close-upMapping out Min protein patterns in fully confined fluidic chambersCritical waves and the length problem of biology.Bacteria under the physical constraints of periodic micro-nanofluidic junctions reveal morphological plasticity and dynamic shifting of Min patterns.Effect of the Min system on timing of cell division in Escherichia coli.Cell-Size Homeostasis and the Incremental Rule in a Bacterial Pathogen.Large-scale modulation of reconstituted Min protein patterns and gradients by defined mutations in MinE's membrane targeting sequenceSpatial coordination between chromosomes and cell division proteins in Escherichia coli.Effects of molecular noise on bistable protein distributions in rod-shaped bacteria.Traveling waves and global oscillations triggered by attractive molecular interactions in an excitable system.Fundamental Principles in Bacterial Physiology - History, Recent progress, and the Future with Focus on Cell Size Control: A Review.Mechanistic insights of the Min oscillator via cell-free reconstitution and imaging.Dissecting the role of conformational change and membrane binding by the bacterial cell division regulator MinE in the stimulation of MinD ATPase activity.Subcellular Organization: A Critical Feature of Bacterial Cell Replication.Exclusion and Hierarchy of Time Scales Lead to Spatial Segregation of Molecular Motors in Cellular Protrusions.MinE conformational switching confers robustness on self-organized Min protein patterns.Absence of the Min System Does Not Cause Major Cell Division Defects in Agrobacterium tumefaciens.The Min-protein oscillations in Escherichia coli: an example of self-organized cellular protein waves.A Markovian Approach towards Bacterial Size Control and Homeostasis in Anomalous Growth Processes.
P2860
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P2860
Membrane binding of MinE allows for a comprehensive description of Min-protein pattern formation
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2013年の論文
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2013年論文
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2013年論文
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Membrane binding of MinE allow ...... Min-protein pattern formation
@ast
Membrane binding of MinE allow ...... Min-protein pattern formation
@en
Membrane binding of MinE allow ...... Min-protein pattern formation
@en-gb
Membrane binding of MinE allow ...... Min-protein pattern formation
@nl
type
label
Membrane binding of MinE allow ...... Min-protein pattern formation
@ast
Membrane binding of MinE allow ...... Min-protein pattern formation
@en
Membrane binding of MinE allow ...... Min-protein pattern formation
@en-gb
Membrane binding of MinE allow ...... Min-protein pattern formation
@nl
altLabel
Membrane Binding of MinE Allow ...... Min-Protein Pattern Formation
@en
prefLabel
Membrane binding of MinE allow ...... Min-protein pattern formation
@ast
Membrane binding of MinE allow ...... Min-protein pattern formation
@en
Membrane binding of MinE allow ...... Min-protein pattern formation
@en-gb
Membrane binding of MinE allow ...... Min-protein pattern formation
@nl
P2093
P2860
P1476
Membrane binding of MinE allow ...... Min-protein pattern formation
@en
P2093
Karsten Kruse
Martin Loose
Mike Bonny
P2860
P304
P356
10.1371/JOURNAL.PCBI.1003347
P407
P577
2013-01-01T00:00:00Z