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Research Article

RNA-Mediated cis Regulation in Acinetobacter baumannii Modulates Stress-Induced Phenotypic Variation

Carly Ching, Kevin Gozzi, Björn Heinemann, Yunrong Chai, Veronica G. Godoy
Tina M. Henkin, Editor
Carly Ching
aDepartment of Biology, Northeastern University, Boston, Massachusetts, USA
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Kevin Gozzi
aDepartment of Biology, Northeastern University, Boston, Massachusetts, USA
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Björn Heinemann
bGottfried Wilhelm Leibniz Universität, Hannover, Germany
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Yunrong Chai
aDepartment of Biology, Northeastern University, Boston, Massachusetts, USA
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Veronica G. Godoy
aDepartment of Biology, Northeastern University, Boston, Massachusetts, USA
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Tina M. Henkin
Ohio State University
Roles: Editor
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DOI: 10.1128/JB.00799-16
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ABSTRACT

In the nosocomial opportunistic pathogen Acinetobacter baumannii, RecA-dependent mutagenesis, which causes antibiotic resistance acquisition, is linked to the DNA damage response (DDR). Notably, unlike the Escherichia coli paradigm, recA and DDR gene expression in A. baumannii is bimodal. Namely, there is phenotypic variation upon DNA damage, which may provide a bet-hedging strategy for survival. Thus, understanding recA gene regulation is key to elucidate the yet unknown DDR regulation in A. baumannii. Here, we identify a structured 5′ untranslated region (UTR) in the recA transcript which serves as a cis-regulatory element. We show that a predicted stem-loop structure in this 5′ UTR affects mRNA half-life and underlies bimodal gene expression and thus phenotypic variation in response to ciprofloxacin treatment. We furthermore show that the stem-loop structure of the recA 5′ UTR influences intracellular RecA protein levels and, in vivo, impairing the formation of the stem-loop structure of the recA 5′ UTR lowers cell survival of UV treatment and decreases rifampin resistance acquisition from DNA damage-induced mutagenesis. We hypothesize that the 5′ UTR allows for stable recA transcripts during stress, including antibiotic treatment, enabling cells to maintain suitable RecA levels for survival. This innovative strategy to regulate the DDR in A. baumannii may contribute to its success as a pathogen.

IMPORTANCE Acinetobacter baumannii is an opportunistic pathogen quickly gaining antibiotic resistances. Mutagenesis and antibiotic resistance acquisition are linked to the DNA damage response (DDR). However, how the DDR is regulated in A. baumannii remains unknown, since unlike most bacteria, A. baumannii does not follow the regulation of the Escherichia coli paradigm. In this study, we have started to uncover the mechanisms regulating the novel A. baumannii DDR. We have found that a cis-acting 5′ UTR regulates recA transcript stability, RecA protein levels, and DNA damage-induced phenotypic variation. Though 5′ UTRs are known to provide stability to transcripts in bacteria, this is the first example in which it regulates a bimodal DDR response through recA transcript stabilization, potentially enabling cells to have enough RecA for survival and genetic variability.

FOOTNOTES

    • Received 17 November 2016.
    • Accepted 14 March 2017.
    • Accepted manuscript posted online 20 March 2017.
  • Supplemental material for this article may be found at https://doi.org/10.1128/JB.00799-16 .

  • Copyright © 2017 American Society for Microbiology.

All Rights Reserved .

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RNA-Mediated cis Regulation in Acinetobacter baumannii Modulates Stress-Induced Phenotypic Variation
Carly Ching, Kevin Gozzi, Björn Heinemann, Yunrong Chai, Veronica G. Godoy
Journal of Bacteriology May 2017, 199 (11) e00799-16; DOI: 10.1128/JB.00799-16

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RNA-Mediated cis Regulation in Acinetobacter baumannii Modulates Stress-Induced Phenotypic Variation
Carly Ching, Kevin Gozzi, Björn Heinemann, Yunrong Chai, Veronica G. Godoy
Journal of Bacteriology May 2017, 199 (11) e00799-16; DOI: 10.1128/JB.00799-16
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KEYWORDS

Acinetobacter baumannii
Bacterial Proteins
DNA-binding proteins
Gene Expression Regulation, Bacterial
RNA, Bacterial
Rec A Recombinases
Acinetobacter
DNA damage
microbial genetics
RecA
gene expression
molecular biology

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