The bacterial cell division proteins FtsA and FtsZ self-organize into dynamic cytoskeletal patterns

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The bacterial cell division proteins FtsA and FtsZ self-organize into dynamic cytoskeletal patterns is …
instance of (P31):
scholarly articleQ13442814

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P6179Dimensions Publication ID1015141325
P356DOI10.1038/NCB2885
P932PMC publication ID4019675
P698PubMed publication ID24316672
P5875ResearchGate publication ID259246843

P2093author name stringMartin Loose
Timothy J Mitchison
P2860cites workCoupled, circumferential motions of the cell wall synthesis machinery and MreB filaments in B. subtilisQ24629706
Condensation of FtsZ filaments can drive bacterial cell divisionQ24646706
Reconstitution of contractile FtsZ rings in liposomesQ24650388
A growing family: the expanding universe of the bacterial cytoskeletonQ27001708
The bacterial cell-division protein ZipA and its interaction with an FtsZ fragment revealed by X-ray crystallographyQ27625171
Ulp1-SUMO crystal structure and genetic analysis reveal conserved interactions and a regulatory element essential for cell growth in yeastQ27625224
Structural insights into the conformational variability of FtsZQ27648605
FtsA forms actin-like protofilamentsQ27678310
Network motifs: theory and experimental approachesQ29615325
Sniffers, buzzers, toggles and blinkers: dynamics of regulatory and signaling pathways in the cellQ29619703
The structure of FtsZ filaments in vivo suggests a force-generating role in cell divisionQ30480675
Investigating intracellular dynamics of FtsZ cytoskeleton with photoactivation single-molecule trackingQ30482840
Fast microtubule dynamics in meiotic spindles measured by single molecule imaging: evidence that the spindle environment does not stabilize microtubulesQ30492820
Nucleotide-dependent conformations of FtsZ dimers and force generation observed through molecular dynamics simulationsQ30519199
Spontaneous motion in hierarchically assembled active matterQ30528428
Bacterial cell division protein FtsZ assembles into protofilament sheets and minirings, structural homologs of tubulin polymersQ33634552
Daughter cell separation is controlled by cytokinetic ring-activated cell wall hydrolysisQ33845937
Genetic and functional analyses of the conserved C-terminal core domain of Escherichia coli FtsZQ33993310
F-actin, a model polymer for semiflexible chains in dilute, semidilute, and liquid crystalline solutionsQ34017105
The bacterial cytoskeleton.Q34024555
Unique and overlapping roles for ZipA and FtsA in septal ring assembly in Escherichia coliQ34085847
SnapShot: key numbers in biologyQ34124340
Min protein patterns emerge from rapid rebinding and membrane interaction of MinE.Q34180224
Processive movement of MreB-associated cell wall biosynthetic complexes in bacteria.Q34189431
Concentration and Assembly of the Division Ring Proteins FtsZ, FtsA, and ZipA during the Escherichia coli Cell CycleQ34197973
FtsA mutants impaired for self-interaction bypass ZipA suggesting a model in which FtsA's self-interaction competes with its ability to recruit downstream division proteinsQ34235469
Isolation, characterization and lipid-binding properties of the recalcitrant FtsA division protein from Escherichia coliQ34326565
Liposome division by a simple bacterial division machineryQ34351599
Tethering the Z ring to the membrane through a conserved membrane targeting sequence in FtsA.Q34400717
FtsZ and the division of prokaryotic cells and organellesQ34460019
Adenine nucleotide-dependent regulation of assembly of bacterial tubulin-like FtsZ by a hypermorph of bacterial actin-like FtsA.Q34964917
Site-specific protein labeling via sortase-mediated transpeptidationQ34975576
Helical insertion of peptidoglycan produces chiral ordering of the bacterial cell wall.Q35845001
Depolymerization dynamics of individual filaments of bacterial cytoskeletal protein FtsZQ35991623
Dynamic interaction of the Escherichia coli cell division ZipA and FtsZ proteins evidenced in nanodiscs.Q36216652
FtsZ exhibits rapid movement and oscillation waves in helix-like patterns in Escherichia coliQ36590750
Rapid in vitro assembly dynamics and subunit turnover of FtsZ demonstrated by fluorescence resonance energy transferQ37114052
Design principles of biochemical oscillatorsQ37313037
Bacterial cell division: assembly, maintenance and disassembly of the Z ringQ37579629
New(s) to the (Z-)ringQ37943484
Bacterial cytokinesis: From Z ring to divisomeQ38034197
Straight and curved conformations of FtsZ are regulated by GTP hydrolysisQ39498382
ZipA-induced bundling of FtsZ polymers mediated by an interaction between C-terminal domainsQ39500686
Sortagging: a versatile method for protein labelingQ40077031
Curved FtsZ protofilaments generate bending forces on liposome membranesQ41786344
Cell division without FtsZ--a variety of redundant mechanismsQ42051022
Characterization of self-association and heteroassociation of bacterial cell division proteins FtsZ and ZipA in solution by composition gradient-static light scatteringQ42807928
Visualization of single Escherichia coli FtsZ filament dynamics with atomic force microscopy.Q46406601
Large-scale vortex lattice emerging from collectively moving microtubules.Q47995234
Direct binding of FtsZ to ZipA, an essential component of the septal ring structure that mediates cell division in E. coliQ48054867
Microtubule solutions display nematic liquid crystalline structure.Q49130302
Self-organization of microtubules and motors.Q52558848
FtsZ polymers bound to lipid bilayers through ZipA form dynamic two dimensional networks.Q53196486
Identification of a region of FtsA required for interaction with FtsZ.Q54441393
Polar patterns of driven filamentsQ59048542
Surface Topology Engineering of Membranes for the Mechanical Investigation of the Tubulin Homologue FtsZQ60648823
Tubulin oligomers and microtubule oscillations. Antagonistic role of microtubule stabilizers and destabilizersQ67989769
Genetic analysis of the Escherichia coli FtsZ.ZipA interaction in the yeast two-hybrid system. Characterization of FtsZ residues essential for the interactions with ZipA and with FtsAQ73693531
Asymmetric cell division in B. subtilis involves a spiral-like intermediate of the cytokinetic protein FtsZQ74083515
Recruitment of ZipA to the division site by interaction with FtsZQ77345061
P4510describes a project that usesImageJQ1659584
P433issue1
P921main subjectcytoskeletonQ154626
P304page(s)38-46
P577publication date2013-12-08
P1433published inNature Cell BiologyQ1574111
P1476titleThe bacterial cell division proteins FtsA and FtsZ self-organize into dynamic cytoskeletal patterns
P478volume16

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