A DNase encoded by integrated element CJIE1 inhibits natural transformation of Campylobacter jejuni

Publication date

2009

Authors

Gaasbeek, E.J.ISNI 0000000388277575
Wagenaar, Jaap AISNI 0000000388430808
Guilhabert, M.R.
Wösten, Marc M S MISNI 0000000397161224
van Putten, J P MORCID 0000-0002-4126-8172ISNI 000000038907215X
der Graaf-van Bloois, Linda vanORCID 0000-0001-8181-3393ISNI 0000000395094347
Parker, C.T.
van der Wal, F.J.

Editors

Advisors

Supervisors

Document Type

Article
Open Access logo

License

Abstract

The species Campylobacter jejuni is considered naturally competent for DNA uptake and displays strong genetic diversity. Nevertheless, nonnaturally transformable strains and several relatively stable clonal lineages exist. In the present study, the molecular mechanism responsible for the nonnatural transformability of a subset of C. jejuni strains was investigated. Comparative genome hybridization indicated that C. jejuni Mu-like prophage integrated element 1 (CJIE1) was more abundant in nonnaturally transformable C. jejuni strains than in naturally transformable strains. Analysis of CJIE1 indicated the presence of dns (CJE0256), which is annotated as a gene encoding an extracellular DNase. DNase assays using a defined dns mutant and a dns-negative strain expressing Dns from a plasmid indicated that Dns is an endogenous DNase. The DNA-hydrolyzing activity directly correlated with the natural transformability of the knockout mutant and the dns-negative strain expressing Dns from a plasmid. Analysis of a broader set of strains indicated that the majority of nonnaturally transformable strains expressed DNase activity, while all naturally competent strains lacked this activity. The inhibition of natural transformation in C. jejuni via endogenous DNase activity may contribute to the formation of stable lineages in the C. jejuni population.

Keywords

Coronacrisis-Taverne

Citation

Gaasbeek, E J, Wagenaar, J A, Guilhabert, M R, Wösten, M M S M, van Putten, J P M, van der Graaf-van Bloois, L, Parker, C T & van der Wal, F J 2009, 'A DNase encoded by integrated element CJIE1 inhibits natural transformation of Campylobacter jejuni', Journal of Bacteriology, vol. 191, no. 7, pp. 2296-2306. https://doi.org/10.1128/JB.01430-08