Structural and physical aspects of bacterial chromosome segregation.
about
Role of RNA polymerase and transcription in the organization of the bacterial nucleoidSuperresolution imaging of ribosomes and RNA polymerase in live Escherichia coli cellsPrimal eukaryogenesis: on the communal nature of precellular States, ancestral to modern lifeCaulobacter requires a dedicated mechanism to initiate chromosome segregation.Escherichia coli DnaA forms helical structures along the longitudinal cell axis distinct from MreB filaments.Nanoscopy of bacterial cells immobilized by holographic optical tweezersAnalyzing stochastic transcription to elucidate the nucleoid's organization.The terminal region of the E. coli chromosome localises at the periphery of the nucleoid.Entropy-driven spatial organization of highly confined polymers: lessons for the bacterial chromosome.In vitro and in vivo biolasing of fluorescent proteins suspended in liquid microdroplet cavities.Segregation of chromosome arms in growing and non-growing Escherichia coli cells.The great divide: coordinating cell cycle events during bacterial growth and division.Genome conformation capture reveals that the Escherichia coli chromosome is organized by replication and transcription.Modelling of crowded polymers elucidate effects of double-strand breaks in topological domains of bacterial chromosomesBacteria as computers making computers.An inventory of the bacterial macromolecular components and their spatial organization.From water and ions to crowded biomacromolecules: in vivo structuring of a prokaryotic cell.The membrane: transertion as an organizing principle in membrane heterogeneity.Organization of sister origins and replisomes during multifork DNA replication in Escherichia coli.Effect of H-NS on the elongation and compaction of single DNA molecules in a nanospace.Simulating the entropic collapse of coarse-grained chromosomes.Independent positioning and action of Escherichia coli replisomes in live cells.A mathematical model for timing the release from sequestration and the resultant Brownian migration of SeqA clusters in E. coli.Structure of the H-NS-DNA nucleoprotein complex.Bacterial nucleoid structure probed by active drag and resistive pulse sensing.
P2860
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P2860
Structural and physical aspects of bacterial chromosome segregation.
description
2006 nî lūn-bûn
@nan
2006年の論文
@ja
2006年論文
@yue
2006年論文
@zh-hant
2006年論文
@zh-hk
2006年論文
@zh-mo
2006年論文
@zh-tw
2006年论文
@wuu
2006年论文
@zh
2006年论文
@zh-cn
name
Structural and physical aspects of bacterial chromosome segregation.
@ast
Structural and physical aspects of bacterial chromosome segregation.
@en
type
label
Structural and physical aspects of bacterial chromosome segregation.
@ast
Structural and physical aspects of bacterial chromosome segregation.
@en
prefLabel
Structural and physical aspects of bacterial chromosome segregation.
@ast
Structural and physical aspects of bacterial chromosome segregation.
@en
P1476
Structural and physical aspects of bacterial chromosome segregation.
@en
P2093
Conrad L Woldringh
Nanne Nanninga
P304
P356
10.1016/J.JSB.2006.04.013
P577
2006-05-20T00:00:00Z