2001
DOI: 10.1073/pnas.261477898
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DNA supercoiling allows enhancer action over a large distance

Abstract: Enhancers are regulatory DNA elements that can activate their genomic targets over a large distance. The mechanism of enhancer action over large distance is unknown. Activation of the glnAp2 promoter by NtrC-dependent enhancer in Escherichia coli was analyzed by using a purified system supporting multiple-round transcription in vitro. The data suggest that DNA supercoiling is an essential requirement for enhancer action over a large distance (2,500 bp) but not over a short distance (110 bp). DNA supercoiling f… Show more

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Cited by 72 publications
(99 citation statements)
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“…At the same time, bacterial transcriptional enhancers can work efficiently over a large distance (up to at least 3.5 kb) both in vivo and in vitro [17][18][19]. Moreover, proand eukaryotic transcriptional enhancers share many key properties [1], and our preliminary data suggest that bacterial enhancers can also work efficiently over a large distance in chromatin environment in vitro.…”
Section: Introductionmentioning
confidence: 55%
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“…At the same time, bacterial transcriptional enhancers can work efficiently over a large distance (up to at least 3.5 kb) both in vivo and in vitro [17][18][19]. Moreover, proand eukaryotic transcriptional enhancers share many key properties [1], and our preliminary data suggest that bacterial enhancers can also work efficiently over a large distance in chromatin environment in vitro.…”
Section: Introductionmentioning
confidence: 55%
“…To analyze enhancer action over a large distance in chromatin environment, the 7637 bp pLY10 plasmid was used [18]. It contains the glnAp2 promoter that is strongly (more than 100-fold) activated by NtrC-dependent enhancer positioned 2.5-kb away from the promoter [18,37].…”
Section: Dna Templates For Analysis Of Distant Communication Betweenmentioning
confidence: 99%
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