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Series GSE196834 Query DataSets for GSE196834
Status Public on Mar 02, 2022
Title The role of the RNA chaperone protein ProQ in Pasteurella multocida
Organism Pasteurella multocida
Experiment type Expression profiling by high throughput sequencing
Summary The Gram-negative pathogen Pasteurella multocida is responsible for many important animal diseases. While a number of P. multocida virulence factors have been identified, very little is known about how gene expression and protein production is regulated in this organism. One mechanism by which bacteria regulate transcript abundance and protein production is riboregulation, which involves the interaction of a small RNA (sRNA) with a target mRNA to alter transcript stability and/or translational efficiency. This interaction often requires stabilization by a ribosome binding protein such as ProQ or Hfq. In E. coli and other species, ProQ has been shown to play a critical role in stabilizing sRNA-mRNA interactions and preferentially binds to 3’ stem-loop regions of the mRNA transcripts, characteristic of intrinsic transcriptional terminators. The aim of this study was to determine the role of ProQ riboregulation in P. multocida and identify the RNA regions to which it binds. We assessed differentially expressed transcripts in a proQ mutant and identified sites of direct ProQ-RNA interaction using in vivo UV-crosslinking and analysis of cDNA (CRAC). These analyses demonstrated that ProQ binds to, and stabilises, ProQ-dependant sRNAs and transfer RNAs in P. multocida via adenosine enriched, highly structured sequences. The binding of ProQ to two RNA molecules was characterised and showed that ProQ bound within the coding sequence of the uncharacterized PmVP161_1121 and within the 3’ region of the sRNA Prrc13.
 
Overall design We report the transcriptional changes caused by the lack or overexpression of the ProQ protein
RNA-seq comparing wild-type, proQ mutant and complemented mutant strains of P. multocida
Web link https://pubmed.ncbi.nlm.nih.gov/35323048/
 
Contributor(s) Boyce JD, Gulliver EL, Deveson Lucas DS
Citation(s) 35323048
Submission date Feb 16, 2022
Last update date Jun 01, 2022
Contact name Deanna S Deveson Lucas
Organization name Monash University
Lab Monash Bioinformatics Platform
Street address 15 Innovation walk, Monash University, Clayton
City Melbourne
State/province Victoria
ZIP/Postal code 3800
Country Australia
 
Platforms (1)
GPL31945 Illumina NextSeq 500 (Pasteurella multocida)
Samples (9)
GSM5902766 Wild-type with empty vector 1
GSM5902767 Wild-type with empty vector 2
GSM5902768 Wild-type with empty vector 3
Relations
BioProject PRJNA807514

Download family Format
SOFT formatted family file(s) SOFTHelp
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Series Matrix File(s) TXTHelp

Supplementary file Size Download File type/resource
GSE196834_proQ_raw_counts_file.csv.gz 70.2 Kb (ftp)(http) CSV
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Raw data are available in SRA
Processed data are available on Series record

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