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Published on: February 24, 2023
High Prevalence of Integrative and Conjugative Elements Encoding Transcription Activator-Like Effector Repeats in
Alexandra Meygret1,2,3, Olivia Peuchant1,2,3, Emilie Dordet-Frisoni4
1USC EA 3671 Mycoplasmal and Chlamydial Infections in Humans, University of Bordeaux, Bordeaux, France.
Abstract:
Integrative and conjugative elements (ICEs) are modular mobile genetic elements that can disseminate through excision, circularization, and transfer. Mycoplasma ICEs have recently been found distributed among some mycoplasma species and there is accumulating evidence that they play a pivotal role in horizontal gene transfers. The occurrence of ICEs has not been documented in Mycoplasma hominis, a human urogenital pathogen responsible for urogenital infections, neonatal infections and extragenital infections. In this study, we searched for, characterized, and compared ICEs by genome analyses of 12 strains of M. hominis. ICEs of 27-30 kb were found in one or two copies in seven of the 12 M. hominis strains sequenced. Only five of these ICEs seemed to be functional, as assessed by detection of circular forms of extrachromosomal ICE. Moreover, the prevalence of ICEs in M. hominis was estimated to be 45% in a collection of 120 clinical isolates of M. hominis, including 27 tetracycline-resistant tet(M)-positive isolates. The proportion of ICEs was not higher in isolates carrying the tet(M) gene, suggesting that ICEs are not involved in tetracycline resistance. Notably, all M. hominis ICEs had a very similar structure, consisting of a 4.0-5.1 kb unusual module composed of five to six juxtaposed CDSs. All the genes forming this module were specific to M. hominis ICEs as they had no homologs in other mycoplasma ICEs. In each M. hominis ICE, one to three CDSs encode proteins that share common structural features with transcription activator-like (TAL) effectors involved in polynucleotide recognition and signal transduction in symbiotic plant pathogen bacteria. The conserved and specific structure of M. hominis ICEs and the high prevalence in clinical strains suggest that these ICEs may confer a selective advantage for the physiology or pathogenicity of this human pathogenic bacterium. These data open the way for further studies aiming at unraveling horizontal gene transfers and virulence factors in M. hominis.
Insights
Integrative and conjugative elements (ICEs) were found in 45% of Mycoplasma hominis strains, suggesting they may impact pathogenicity. These mobile genetic elements are not linked to tetracycline resistance in this human pathogen.
Area of Science:
- Microbiology
- Genetics
- Molecular Biology
Background:
- Integrative and conjugative elements (ICEs) are mobile genetic elements involved in horizontal gene transfer.
- Mycoplasma hominis is a human urogenital pathogen where ICEs have not been previously documented.
- ICEs play a role in disseminating genes among bacterial populations.
Purpose of the Study:
- To investigate the presence, characteristics, and potential role of ICEs in Mycoplasma hominis.
- To analyze the genome of M. hominis strains for ICEs and compare their structures.
- To estimate the prevalence of ICEs in clinical isolates of M. hominis.
Main Methods:
- Genome analysis of 12 M. hominis strains.
- Detection of circular extrachromosomal ICE forms.
- Prevalence estimation in 120 clinical isolates, including tetracycline-resistant strains.
Main Results:
- ICEs (27-30 kb) were identified in 7 out of 12 sequenced M. hominis strains.
- Only 5 ICEs appeared functional, indicated by circular forms.
- ICEs were present in 45% of 120 clinical isolates, with no association with the tet(M) gene.
- M. hominis ICEs possess a conserved, unique structure with potential transcription activator-like (TAL) effector genes.
Conclusions:
- ICEs are prevalent in Mycoplasma hominis and exhibit a conserved, specific structure.
- These ICEs may confer a selective advantage, influencing the physiology or pathogenicity of M. hominis.
- Further research is needed to understand horizontal gene transfer and virulence factors mediated by these ICEs.
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