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Primary transcriptome analysis reveals importance of IS elements for the shaping of the transcriptional landscape of Bordetella pertussis
F. Amman, A. D'Halluin, R. Antoine, L. Huot, I. Bibova, K. Keidel, S. Slupek, P. Bouquet, L. Coutte, S. Caboche, C. Locht, B. Vecerek, D. Hot,
Jazyk angličtina Země Spojené státy americké
Typ dokumentu časopisecké články, práce podpořená grantem
Grantová podpora
NV16-30782A
MZ0
CEP - Centrální evidence projektů
Digitální knihovna NLK
Plný text - Článek
NLK
Free Medical Journals
od 2004 do Před 1 rokem
Freely Accessible Science Journals
od 2004
PubMed Central
od 2009 do Před 1 rokem
Europe PubMed Central
od 2009 do Před 1 rokem
- MeSH
- 3' nepřekládaná oblast MeSH
- 5' nepřekládaná oblast MeSH
- bakteriální RNA genetika MeSH
- Bordetella pertussis genetika MeSH
- genetická transkripce * MeSH
- genom bakteriální genetika MeSH
- messenger RNA genetika MeSH
- nekódující RNA genetika MeSH
- počátek transkripce MeSH
- stanovení celkové genové exprese * MeSH
- transpozibilní elementy DNA genetika MeSH
- vysoce účinné nukleotidové sekvenování MeSH
- Publikační typ
- časopisecké články MeSH
- práce podpořená grantem MeSH
Bordetella pertussis is the causative agent of whooping cough, a respiratory disease still considered as a major public health threat and for which recent re-emergence has been observed. Constant reshuffling of Bordetella pertussis genome organization was observed during evolution. These rearrangements are essentially mediated by Insertion Sequences (IS), a mobile genetic elements present in more than 230 copies in the genome, which are supposed to be one of the driving forces enabling the pathogen to escape from vaccine-induced immunity. Here we use high-throughput sequencing approaches (RNA-seq and differential RNA-seq), to decipher Bordetella pertussis transcriptome characteristics and to evaluate the impact of IS elements on transcriptome architecture. Transcriptional organization was determined by identification of transcription start sites and revealed also a large variety of non-coding RNAs including sRNAs, leaderless mRNAs or long 3' and 5'UTR including seven riboswitches. Unusual topological organizations, such as overlapping 5'- or 3'-extremities between oppositely orientated mRNA were also unveiled. The pivotal role of IS elements in the transcriptome architecture and their effect on the transcription of neighboring genes was examined. This effect is mediated by the introduction of IS harbored promoters or by emergence of hybrid promoters. This study revealed that in addition to their impact on genome rearrangements, most of the IS also impact on the expression of their flanking genes. Furthermore, the transcripts produced by IS are strain-specific due to the strain to strain variation in IS copy number and genomic context.
c Institute of Microbiology of the ASCR
Laboratory of post transcriptional control of gene expression Prague Czech Republic
Citace poskytuje Crossref.org
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