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Multiple Pathways of Plasmid DNA Transfer in Helicobacter pylori

Overview of attention for article published in PLOS ONE, September 2012
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Title
Multiple Pathways of Plasmid DNA Transfer in Helicobacter pylori
Published in
PLOS ONE, September 2012
DOI 10.1371/journal.pone.0045623
Pubmed ID
Authors

Stefanie Rohrer, Lea Holsten, Evelyn Weiss, Mohammed Benghezal, Wolfgang Fischer, Rainer Haas

Abstract

Many Helicobacter pylori (Hp) strains carry cryptic plasmids of different size and gene content, the function of which is not well understood. A subgroup of these plasmids (e.g. pHel4, pHel12), contain a mobilisation region, but no cognate type IV secretion system (T4SS) for conjugative transfer. Instead, certain H. pylori strains (e.g. strain P12 carrying plasmid pHel12) can harbour up to four T4SSs in their genome (cag-T4SS, comB, tfs3, tfs4). Here, we show that such indigenous plasmids can be efficiently transferred between H. pylori strains, even in the presence of extracellular DNaseI eliminating natural transformation. Knockout of a plasmid-encoded mobA relaxase gene significantly reduced plasmid DNA transfer in the presence of DNaseI, suggesting a DNA conjugation or mobilisation process. To identify the T4SS involved in this conjugative DNA transfer, each individual T4SS was consecutively deleted from the bacterial chromosome. Using a marker-free counterselectable gene deletion procedure (rpsL counterselection method), a P12 mutant strain was finally obtained with no single T4SS (P12ΔT4SS). Mating experiments using these mutants identified the comB T4SS in the recipient strain as the major mediator of plasmid DNA transfer between H. pylori strains, both in a DNaseI-sensitive (natural transformation) as well as a DNaseI-resistant manner (conjugative transfer). However, transfer of a pHel12::cat plasmid from a P12ΔT4SS donor strain into a P12ΔT4SS recipient strain provided evidence for the existence of a third, T4SS-independent mechanism of DNA transfer. This novel type of plasmid DNA transfer, designated as alternate DNaseI-Resistant (ADR) mechanism, is observed at a rather low frequency under in vitro conditions. Taken together, our study describes for the first time the existence of three distinct pathways of plasmid DNA transfer between H. pylori underscoring the importance of horizontal gene transfer for this species.

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Geographical breakdown

Country Count As %
United States 2 3%
Germany 1 1%
Unknown 67 96%

Demographic breakdown

Readers by professional status Count As %
Student > Ph. D. Student 17 24%
Researcher 13 19%
Student > Master 10 14%
Student > Bachelor 9 13%
Professor > Associate Professor 3 4%
Other 5 7%
Unknown 13 19%
Readers by discipline Count As %
Biochemistry, Genetics and Molecular Biology 23 33%
Agricultural and Biological Sciences 21 30%
Immunology and Microbiology 3 4%
Medicine and Dentistry 3 4%
Social Sciences 1 1%
Other 3 4%
Unknown 16 23%