Phage exposure causes dynamic shifts in the expression states of specific phase-variable genes of Campylobacter jejuni

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Standard

Phage exposure causes dynamic shifts in the expression states of specific phase-variable genes of Campylobacter jejuni. / Aidley, Jack; Holst Sørensen, Martine C.; Bayliss, Christopher D.; Brøndsted, Lone.

I: Microbiology (United Kingdom), Bind 163, Nr. 6, 2017, s. 911-919.

Publikation: Bidrag til tidsskriftTidsskriftartikelForskningfagfællebedømt

Harvard

Aidley, J, Holst Sørensen, MC, Bayliss, CD & Brøndsted, L 2017, 'Phage exposure causes dynamic shifts in the expression states of specific phase-variable genes of Campylobacter jejuni', Microbiology (United Kingdom), bind 163, nr. 6, s. 911-919. https://doi.org/10.1099/mic.0.000470

APA

Aidley, J., Holst Sørensen, M. C., Bayliss, C. D., & Brøndsted, L. (2017). Phage exposure causes dynamic shifts in the expression states of specific phase-variable genes of Campylobacter jejuni. Microbiology (United Kingdom), 163(6), 911-919. https://doi.org/10.1099/mic.0.000470

Vancouver

Aidley J, Holst Sørensen MC, Bayliss CD, Brøndsted L. Phage exposure causes dynamic shifts in the expression states of specific phase-variable genes of Campylobacter jejuni. Microbiology (United Kingdom). 2017;163(6):911-919. https://doi.org/10.1099/mic.0.000470

Author

Aidley, Jack ; Holst Sørensen, Martine C. ; Bayliss, Christopher D. ; Brøndsted, Lone. / Phage exposure causes dynamic shifts in the expression states of specific phase-variable genes of Campylobacter jejuni. I: Microbiology (United Kingdom). 2017 ; Bind 163, Nr. 6. s. 911-919.

Bibtex

@article{7e52c9149739495b9670c2eb26fc1481,
title = "Phage exposure causes dynamic shifts in the expression states of specific phase-variable genes of Campylobacter jejuni",
abstract = "Phase variation (PV) creates phenotypic heterogeneity at high frequencies and in a reversible manner. This phenomenon allows bacteria to adapt to a variety of different environments and selective pressures. In Campylobacter jejuni this reversible adaptive process is mediated by mutations in homopolymeric G/C tracts. Many C. jejuni-specific phages are dependent on phase-variable surface structures for successful infection. We previously identified the capsular polysaccharide (CPS) moiety, MeOPN-GalfNAc, as a receptor for phage F336 and showed that phase-variable expression of the transferase for this CPS modification, cj1421, and two other phase-variable CPS genes generated phage resistance in C. jejuni. Here we investigate the population dynamics of C. jejuni NCTC11168 when exposed to phage F336 in vitro using a newly described method - the 28-locus-CJ11168 PV analysis. Dynamic switching was observed in the ON/OFF states of three phase-variable CPS genes, cj1421, cj1422 and cj1426, during phage F336 exposure, with the dominant phage-resistant phasotype differing between cultures. Although loss of the phage receptor was predominately observed, several other PV events also led to phage resistance, a phenomenon that increases the chance of phage-resistant subpopulations being present in any growing culture. No other PV genes were affected and exposure to phage F336 resulted in a highly specific response, only selecting for phase variants of cj1421, cj1422 and cj1426. In summary, C. jejuni may benefit from modification of the surface in multiple ways to inhibit or reduce phage binding, thereby ensuring the survival of the population when exposed to phages.",
keywords = "Campylobacter jejuni, CPS modifications, Phage resistance, Phase-variable gene expression",
author = "Jack Aidley and {Holst S{\o}rensen}, {Martine C.} and Bayliss, {Christopher D.} and Lone Br{\o}ndsted",
year = "2017",
doi = "10.1099/mic.0.000470",
language = "English",
volume = "163",
pages = "911--919",
journal = "Microbiology",
issn = "1350-0872",
publisher = "Society for General Microbiology",
number = "6",

}

RIS

TY - JOUR

T1 - Phage exposure causes dynamic shifts in the expression states of specific phase-variable genes of Campylobacter jejuni

AU - Aidley, Jack

AU - Holst Sørensen, Martine C.

AU - Bayliss, Christopher D.

AU - Brøndsted, Lone

PY - 2017

Y1 - 2017

N2 - Phase variation (PV) creates phenotypic heterogeneity at high frequencies and in a reversible manner. This phenomenon allows bacteria to adapt to a variety of different environments and selective pressures. In Campylobacter jejuni this reversible adaptive process is mediated by mutations in homopolymeric G/C tracts. Many C. jejuni-specific phages are dependent on phase-variable surface structures for successful infection. We previously identified the capsular polysaccharide (CPS) moiety, MeOPN-GalfNAc, as a receptor for phage F336 and showed that phase-variable expression of the transferase for this CPS modification, cj1421, and two other phase-variable CPS genes generated phage resistance in C. jejuni. Here we investigate the population dynamics of C. jejuni NCTC11168 when exposed to phage F336 in vitro using a newly described method - the 28-locus-CJ11168 PV analysis. Dynamic switching was observed in the ON/OFF states of three phase-variable CPS genes, cj1421, cj1422 and cj1426, during phage F336 exposure, with the dominant phage-resistant phasotype differing between cultures. Although loss of the phage receptor was predominately observed, several other PV events also led to phage resistance, a phenomenon that increases the chance of phage-resistant subpopulations being present in any growing culture. No other PV genes were affected and exposure to phage F336 resulted in a highly specific response, only selecting for phase variants of cj1421, cj1422 and cj1426. In summary, C. jejuni may benefit from modification of the surface in multiple ways to inhibit or reduce phage binding, thereby ensuring the survival of the population when exposed to phages.

AB - Phase variation (PV) creates phenotypic heterogeneity at high frequencies and in a reversible manner. This phenomenon allows bacteria to adapt to a variety of different environments and selective pressures. In Campylobacter jejuni this reversible adaptive process is mediated by mutations in homopolymeric G/C tracts. Many C. jejuni-specific phages are dependent on phase-variable surface structures for successful infection. We previously identified the capsular polysaccharide (CPS) moiety, MeOPN-GalfNAc, as a receptor for phage F336 and showed that phase-variable expression of the transferase for this CPS modification, cj1421, and two other phase-variable CPS genes generated phage resistance in C. jejuni. Here we investigate the population dynamics of C. jejuni NCTC11168 when exposed to phage F336 in vitro using a newly described method - the 28-locus-CJ11168 PV analysis. Dynamic switching was observed in the ON/OFF states of three phase-variable CPS genes, cj1421, cj1422 and cj1426, during phage F336 exposure, with the dominant phage-resistant phasotype differing between cultures. Although loss of the phage receptor was predominately observed, several other PV events also led to phage resistance, a phenomenon that increases the chance of phage-resistant subpopulations being present in any growing culture. No other PV genes were affected and exposure to phage F336 resulted in a highly specific response, only selecting for phase variants of cj1421, cj1422 and cj1426. In summary, C. jejuni may benefit from modification of the surface in multiple ways to inhibit or reduce phage binding, thereby ensuring the survival of the population when exposed to phages.

KW - Campylobacter jejuni

KW - CPS modifications

KW - Phage resistance

KW - Phase-variable gene expression

U2 - 10.1099/mic.0.000470

DO - 10.1099/mic.0.000470

M3 - Journal article

C2 - 28597819

AN - SCOPUS:85022175282

VL - 163

SP - 911

EP - 919

JO - Microbiology

JF - Microbiology

SN - 1350-0872

IS - 6

ER -

ID: 184388743