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  • Moraxella catarrhalis Restriction-Modification Systems Are Associated with Phylogenetic Lineage and Disease

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    Author(s)
    Blakeway, Luke V
    Tan, Aimee
    Lappan, Rachael
    Ariff, Amir
    Pickering, Janessa L
    Peacock, Christopher S
    Blyth, Christopher C
    Kahler, Charlene M
    Chang, Barbara J
    Lehmann, Deborah
    Kirkham, Lea-Ann S
    Murphy, Timothy F
    Jennings, Michael P
    Bakaletz, Lauren O
    Atack, John M
    Peak, Ian R
    Seib, Kate L
    Griffith University Author(s)
    Jennings, Michael P.
    Peak, Ian
    Seib, Kate
    Atack, John M.
    Year published
    2018
    Metadata
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    Abstract
    Moraxella catarrhalis is a human-adapted pathogen, and a major cause of otitis media (OM) and exacerbations of chronic obstructive pulmonary disease. The species is comprised of two main phylogenetic lineages, RB1 and RB2/3. Restriction–modification (R-M) systems are among the few lineage-associated genes identified in other bacterial genera and have multiple functions including defense against foreign invading DNA, maintenance of speciation, and epigenetic regulation of gene expression. Here, we define the repertoire of R-M systems in 51 publicly available M. catarrhalis genomes and report their distribution among M. ...
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    Moraxella catarrhalis is a human-adapted pathogen, and a major cause of otitis media (OM) and exacerbations of chronic obstructive pulmonary disease. The species is comprised of two main phylogenetic lineages, RB1 and RB2/3. Restriction–modification (R-M) systems are among the few lineage-associated genes identified in other bacterial genera and have multiple functions including defense against foreign invading DNA, maintenance of speciation, and epigenetic regulation of gene expression. Here, we define the repertoire of R-M systems in 51 publicly available M. catarrhalis genomes and report their distribution among M. catarrhalis phylogenetic lineages. An association with phylogenetic lineage (RB1 or RB2/3) was observed for six R-M systems, which may contribute to the evolution of the lineages by restricting DNA transformation. In addition, we observed a relationship between a mutually exclusive Type I R-M system and a Type III R-M system at a single locus conserved throughout a geographically and clinically diverse set of M. catarrhalis isolates. The Type III R-M system at this locus contains the phase-variable Type III DNA methyltransferase, modM, which controls a phasevarion (phase-variable regulon). We observed an association between modM presence and OM-associated middle ear isolates, indicating a potential role for ModM-mediated epigenetic regulation in OM pathobiology.
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    Journal Title
    GENOME BIOLOGY AND EVOLUTION
    Volume
    10
    Issue
    11
    DOI
    https://doi.org/10.1093/gbe/evy226
    Funder(s)
    NHMRC
    Grant identifier(s)
    APP1099279
    APP1045235
    Copyright Statement
    © The Author(s) 2018. Published by Oxford University Press on behalf of the Society for Molecular Biology and Evolution. This is an Open Access article distributed under the terms of the Creative Commons Attribution License (http://creativecommons.org/licenses/by/4.0/), which permits unrestricted reuse, distribution, and reproduction in any medium, provided the original work is properly cited.
    Subject
    Biochemistry and cell biology
    Evolutionary biology
    Genetics
    Microbial genetics
    Infectious agents
    Publication URI
    http://hdl.handle.net/10072/383504
    Collection
    • Journal articles

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