Genomics

Dataset Information

0

Transcriptional consequences of DNA gyrase inhibition


ABSTRACT: DNA gyrase is an essential enzyme whose activity is required for DNA replication and chromosome maintenance. Inhibition of gyrase results in multiple physiological effects including changes in DNA superhelicity, replication arrest and DNA damage. Using genetic, genomic, statistical and biochemical techniques, we have untangled the contribution of individual effects, assessed their relative significance and concluded that: i) DNA replication is required for the formation of spatial transcriptional domains; ii) transcriptional response to gyrase inhibition is coordinated between at least two modules involved in DNA maintenance, relaxation and damage response; iii) genes whose transcriptional response to gyrase inhibition does not depend on the activity of topoisomerase I can be classified on the basis of the GC excess in their upstream and coding sequences into, respectively, activated and repressed by gyrase inhibition; iv) relaxation by topoisomerase I dominates the transcriptional response upon gyrase inhibition, followed by the effects of replication and RecA. Keywords: time course

ORGANISM(S): Escherichia coli

PROVIDER: GSE4408 | GEO | 2006/03/10

SECONDARY ACCESSION(S): PRJNA94637

REPOSITORIES: GEO

Similar Datasets

2012-10-14 | E-BUGS-106 | biostudies-arrayexpress
2017-01-31 | GSE85357 | GEO
2020-10-30 | GSE150757 | GEO
2001-07-30 | E-GEOD-8 | biostudies-arrayexpress
| PRJNA338794 | ENA
2021-12-06 | E-MTAB-10949 | biostudies-arrayexpress
| PRJNA94637 | ENA
2020-03-17 | MSV000085109 | MassIVE
2018-09-13 | GSE100657 | GEO
2022-07-20 | GSE194037 | GEO