Structure and evolution of gene regulatory networks in microbial genomes.
about
Collective sensing and collective responses in quorum-sensing bacteriaEvolution of gene regulatory networks by fluctuating selection and intrinsic constraintsReconstructing genome trees of prokaryotes using overlapping genes.Identification and genomic analysis of transcription factors in archaeal genomes exemplifies their functional architecture and evolutionary originBenchmarks for flexible and rigid transcription factor-DNA docking.A model for Escherichia coli chromosome packaging supports transcription factor-induced DNA domain formationEvolution of Intra-specific Regulatory Networks in a Multipartite Bacterial GenomeAdaptive Evolution of Thermotoga maritima Reveals Plasticity of the ABC Transporter Network.Signal correlations in ecological niches can shape the organization and evolution of bacterial gene regulatory networksThe nucleoid-associated proteins H-NS and FIS modulate the DNA supercoiling response of the pel genes, the major virulence factors in the plant pathogen bacterium Dickeya dadantii.Mechanisms and evolution of control logic in prokaryotic transcriptional regulation.From specific to global analysis of posttranscriptional regulation in eukaryotes: posttranscriptional regulatory networks.Microbial biofilm as a smart material.Rational design of an artificial genetic switch: Co-option of the H-NS-repressed proU operon by the VirB virulence master regulator.Interplay between copper and zinc homeostasis through the transcriptional regulator Zur in Enterococcus faecalis.Transcriptional regulation shapes the organization of genes on bacterial chromosomes.Dissecting the expression patterns of transcription factors across conditions using an integrated network-based approach.Fractal topology of gene promoter networks at phase transitions.IntergenicDB: a database for intergenic sequences.Enterococcus faecalis reconfigures its transcriptional regulatory network activation at different copper levels.A knowledge-based orientation potential for transcription factor-DNA docking.iPromoter-2L: a two-layer predictor for identifying promoters and their types by multi-window-based PseKNC.Extensive cross-talk and global regulators identified from an analysis of the integrated transcriptional and signaling network in Escherichia coli.RAIL: A new tool for defining bacterial promoter regions.
P2860
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P2860
Structure and evolution of gene regulatory networks in microbial genomes.
description
2007 nî lūn-bûn
@nan
2007年の論文
@ja
2007年学术文章
@wuu
2007年学术文章
@zh
2007年学术文章
@zh-cn
2007年学术文章
@zh-hans
2007年学术文章
@zh-my
2007年学术文章
@zh-sg
2007年學術文章
@yue
2007年學術文章
@zh-hant
name
Structure and evolution of gene regulatory networks in microbial genomes.
@en
Structure and evolution of gene regulatory networks in microbial genomes.
@nl
type
label
Structure and evolution of gene regulatory networks in microbial genomes.
@en
Structure and evolution of gene regulatory networks in microbial genomes.
@nl
prefLabel
Structure and evolution of gene regulatory networks in microbial genomes.
@en
Structure and evolution of gene regulatory networks in microbial genomes.
@nl
P2860
P1476
Structure and evolution of gene regulatory networks in microbial genomes.
@en
P2860
P304
P356
10.1016/J.RESMIC.2007.09.001
P577
2007-10-15T00:00:00Z