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Title: Targets of the small regulatory RNA DapZ      
keywords:
Transcriptome or Gene expression
ID:
PRJNA168103
description:
To determine the targets of the small regulatory RNA DapZ in S. Typhimurium, we looked at the effect of a short pulse of DapZ over-expression on the Salmonella transcriptome, as well as a DapZ variant that lacks the GcvB-like R1 region. To achieve over-expression, the wild-type DapZ and its variant were cloned in the pBAD plasmid and induced with 0.2% L-arabinose for 10 min. We then extracted the total RNA for transcriptional profiling. A strain carrying the pBAD plasmid w/o insert was used as negative control (also induced by L-arabinose). 2 biological replicates were performed. This sRNA target identification strategy has been described in Papenfort et al; Molecular Microbiology (2006) 62(6), 1674-1688. Overall design: We used whole-genome S. typhimurium microarrays to determine relative mRNA expression changes, comparing the mRNA profiles. Microarrays used in this study were produced by in-situ synthesis as 8x15k multipack format from Agilent Technologies. Each microarray comprises 13268 60-mer S. typhimurium strain SL1344 specific oligonucleotides supplemented with 319 60-mer S. enterica subsp. serovar Typhimurium 14028S specific oligonucleotides, 360 60-mer S. typhimurium LT2 specific oligonucleotides and 360 60-mer oligonucleotides specific for 149 Salmonella sRNAs. The experimental design involves the use of Salmonella enterica serovar Typhimurium genomic DNA as the co-hybridized control for one channel on all microarrays. Two independent biological eperiments were analyzed.
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landingpage: http://www.ncbi.nlm.nih.gov/bioproject/PRJNA168103
authentication:
none
authorization:
none
ID:
pmid:22922465
name:
Salmonella enterica subsp. enterica serovar Typhimurium str. SL1344
ncbiID:
ncbitax:216597
abbreviation:
NCBI
homePage: http://www.ncbi.nlm.nih.gov
ID:
SCR:006472
name:
National Center for Biotechnology Information
homePage: http://www.ncbi.nlm.nih.gov/bioproject
ID:
SCR:004801
name:
NCBI BioProject