Non-specific DNA binding of genome regulating proteins as a biological control mechanism: I. The lac operon: equilibrium aspects.
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Transcription factors bind thousands of active and inactive regions in the Drosophila blastodermRegulator trafficking on bacterial transcription units in vivoModulation of the Active Complex Assembly and Turnover Rate by Protein−DNA Interactions in Cre−LoxP Recombination † , ‡Acetylation of lysine 120 of p53 endows DNA-binding specificity at effective physiological salt concentrationQuantitative models of the mechanisms that control genome-wide patterns of transcription factor binding during early Drosophila developmentThe appeasement of Doug: a synthetic approach to enhancer biology.A base-excision DNA-repair protein finds intrahelical lesion bases by fast sliding in contact with DNA.Molecular mechanism governing ratio-dependent transcription regulation in the ccdAB operon.Implications of some genetic control mechanisms in NeurosporaDynamic equilibrium on DNA defines transcriptional regulation of a multidrug binding transcriptional repressor, LmrR.Non-specific DNA binding interferes with the efficient excision of oxidative lesions from chromatin by the human DNA glycosylase, NEIL1.Sequence-independent upstream DNA-alphaCTD interactions strongly stimulate Escherichia coli RNA polymerase-lacUV5 promoter association.A comparison of in vivo and in vitro DNA-binding specificities suggests a new model for homeoprotein DNA binding in Drosophila embryos.The properties of a new polymerase III transcription factor reveal that transcription complexes can assemble by more than one pathwayOn the nature of cis-acting regulatory proteins and genetic organization in bacteriophage: the example of gene Q of bacteriophage lambda.Intracellular location of catabolite activator protein of Escherichia coli.Purification of glutamine synthetase from a variety of bacteria.Analytic binding isotherms describing competitive interactions of a protein ligand with specific and nonspecific sites on the same DNA oligomer.Accurate prediction of inducible transcription factor binding intensities in vivo.Comprehensive genome-wide protein-DNA interactions detected at single-nucleotide resolutionEffects of macromolecular crowding on genetic networks.Quantitative model for gene regulation by lambda phage repressorNuclear physics (of the cell, not the atom)Sequence specificity incompletely defines the genome-wide occupancy of Myc.Insights into transcriptional regulation and sigma competition from an equilibrium model of RNA polymerase binding to DNAProtein-DNA binding in the absence of specific base-pair recognitionIncreased subtlety of transcription factor binding increases complexity of genome regulation.Nonspecific DNA binding of genome-regulating proteins as a biological control mechanism: measurement of DNA-bound Escherichia coli lac repressor in vivo.Lesion search and recognition by thymine DNA glycosylase revealed by single molecule imaging.A protein-induced DNA bend increases the specificity of a prokaryotic enhancer-binding protein.Double-stranded DNA templates can induce alpha-helical conformation in peptides containing lysine and alanine: functional implications for leucine zipper and helix-loop-helix transcription factors.A model for the non-specific binding of catabolite gene activator protein to DNA.The role of chromatin accessibility in directing the widespread, overlapping patterns of Drosophila transcription factor binding.On the specificity of DNA-protein interactions.Nonconsensus Protein Binding to Repetitive DNA Sequence Elements Significantly Affects Eukaryotic GenomesTranscriptional regulation by the numbers: models.Binding of E.coli lac repressor to non-operator DNA.Rules of engagement for base excision repair in chromatinVariance-corrected Michaelis-Menten equation predicts transient rates of single-enzyme reactions and response times in bacterial gene-regulation.Purified glucocorticoid receptors bind selectively in vitro to a cloned DNA fragment whose transcription is regulated by glucocorticoids in vivo
P2860
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P2860
Non-specific DNA binding of genome regulating proteins as a biological control mechanism: I. The lac operon: equilibrium aspects.
description
1974 nî lūn-bûn
@nan
1974 թուականի Դեկտեմբերին հրատարակուած գիտական յօդուած
@hyw
1974 թվականի դեկտեմբերին հրատարակված գիտական հոդված
@hy
1974年の論文
@ja
1974年学术文章
@wuu
1974年学术文章
@zh-cn
1974年学术文章
@zh-hans
1974年学术文章
@zh-my
1974年学术文章
@zh-sg
1974年學術文章
@yue
name
Non-specific DNA binding of ge ...... c operon: equilibrium aspects.
@ast
Non-specific DNA binding of ge ...... c operon: equilibrium aspects.
@en
Non-specific DNA binding of ge ...... c operon: equilibrium aspects.
@nl
type
label
Non-specific DNA binding of ge ...... c operon: equilibrium aspects.
@ast
Non-specific DNA binding of ge ...... c operon: equilibrium aspects.
@en
Non-specific DNA binding of ge ...... c operon: equilibrium aspects.
@nl
prefLabel
Non-specific DNA binding of ge ...... c operon: equilibrium aspects.
@ast
Non-specific DNA binding of ge ...... c operon: equilibrium aspects.
@en
Non-specific DNA binding of ge ...... c operon: equilibrium aspects.
@nl
P2093
P2860
P356
P1476
Non-specific DNA binding of ge ...... c operon: equilibrium aspects.
@en
P2093
P2860
P304
P356
10.1073/PNAS.71.12.4808
P407
P577
1974-12-01T00:00:00Z