Dual and divergent transcriptional impact of IS1548 insertion upstream of the peptidoglycan biosynthesis gene murB of Streptococcus agalactiae.


Journal

Gene
ISSN: 1879-0038
Titre abrégé: Gene
Pays: Netherlands
ID NLM: 7706761

Informations de publication

Date de publication:
15 Dec 2019
Historique:
received: 04 06 2019
revised: 01 08 2019
accepted: 28 08 2019
pubmed: 3 9 2019
medline: 1 10 2019
entrez: 3 9 2019
Statut: ppublish

Résumé

Fourteen different insertion sequences belonging to seven families were identified in the genome of Streptococcus agalactiae. Among them, IS1548, a mobile element of the ISAs1 family, was linked to clonal complex (CC) 19 strains associated with neonatal meningitis and endocarditis. IS1548 impacts S. agalactiae in two reported ways: i) inactivation of virulence genes by insertion in an open reading frame (e.g. hylB or cpsD), ii) positive modulation of the expression of a downstream gene by insertion in an intergenic region (e.g. lmb). We previously identified an unknown integration site of IS1548 in the intergenic region between the folK and the murB genes involved in folate and peptidoglycan biosynthesis, respectively. In this work, we analyzed the prevalence of IS1548 in a large collection of nine hundred and eleven S. agalactiae strains. IS1548 positive strains belong to twenty-nine different sequence types and to ten CCs. The majority of them were, however, clustered within sequence type 19 and sequence type 22, belonging to CC19 and CC22, respectively. In contrast, IS1548 targets the folK-murB intergenic region exclusively in CC19 strains. We evaluated the impact of the insertion of IS1548 on the expression of murB by locating transcriptional promoters influencing its expression in the presence or absence of IS1548 and by comparative β-galactosidase transcriptional fusion assays. We found that in the absence of IS1548, genes involved in folate biosynthesis are co-transcribed with murB. As it was postulated that a folic acid mediated reaction may be involved in cell wall synthesis, this co-transcription could be necessary to synchronize these two processes. The insertion of IS1548 in the folK-murB intergenic region disrupt this co-transcription. Interestingly, we located a promoter at the right end of IS1548 that is able to initiate additional transcripts of murB. The insertion of IS1548 in this region has thus a dual and divergent impact on the expression of murB. By comparative β-galactosidase transcriptional fusion assays, we showed that, consequently, the overall impact of the insertion of IS1548 results in a minor decrease of murB gene transcription. This study provides new insights into gene expression effects mediated by IS1548 in S. agalactiae.

Identifiants

pubmed: 31476407
pii: S0378-1119(19)30753-X
doi: 10.1016/j.gene.2019.144094
pii:
doi:

Substances chimiques

Bacterial Proteins 0
DNA, Bacterial 0
DNA, Intergenic 0
Peptidoglycan 0

Types de publication

Journal Article

Langues

eng

Sous-ensembles de citation

IM

Pagination

144094

Commentaires et corrections

Type : ErratumIn

Informations de copyright

Copyright © 2019 Elsevier B.V. All rights reserved.

Auteurs

Sarah Khazaal (S)

ISP, Bactéries et Risque Materno-Foetal, Université de Tours, INRA, 37032 Tours, France; Azm Center for Research in Biotechnology and its Applications, LBA3B, EDST, Lebanese University, Tripoli 1300, Lebanon.

Rim Al Safadi (R)

Azm Center for Research in Biotechnology and its Applications, LBA3B, EDST, Lebanese University, Tripoli 1300, Lebanon.

Dani Osman (D)

Azm Center for Research in Biotechnology and its Applications, LBA3B, EDST, Lebanese University, Tripoli 1300, Lebanon.

Aurélia Hiron (A)

ISP, Bactéries et Risque Materno-Foetal, Université de Tours, INRA, 37032 Tours, France.

Philippe Gilot (P)

ISP, Bactéries et Risque Materno-Foetal, Université de Tours, INRA, 37032 Tours, France. Electronic address: philippe.gilot@univ-tours.fr.

Articles similaires

Photosynthesis Ribulose-Bisphosphate Carboxylase Carbon Dioxide Molecular Dynamics Simulation Cyanobacteria
Coal Metagenome Phylogeny Bacteria Genome, Bacterial

A computational model for bacteriophage ϕX174 gene expression.

Alexis M Hill, Tanvi A Ingle, Claus O Wilke
1.00
Gene Expression Regulation, Viral Promoter Regions, Genetic Bacteriophage phi X 174 Computer Simulation Models, Genetic

Two codependent routes lead to high-level MRSA.

Abimbola Feyisara Adedeji-Olulana, Katarzyna Wacnik, Lucia Lafage et al.
1.00
Methicillin-Resistant Staphylococcus aureus Penicillin-Binding Proteins Peptidoglycan Bacterial Proteins Anti-Bacterial Agents

Classifications MeSH