Cargando…

UmuDAb: An Error-Prone Polymerase Accessory Homolog Whose N-Terminal Domain Is Required for Repression of DNA Damage Inducible Gene Expression in Acinetobacter baylyi

In many bacteria, the DNA damage response induces genes (SOS genes) that were repressed by LexA. LexA represses transcription by binding to SOS promoters via a helix-turn-helix motif in its N-terminal domain (NTD). Upon DNA damage, LexA cleaves itself and allows induction of transcription. In Acinet...

Descripción completa

Detalles Bibliográficos
Autores principales: Witkowski, Travis A., Grice, Alison N., Stinnett, DeAnna B., Wells, Whitney K., Peterson, Megan A., Hare, Janelle M.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Public Library of Science 2016
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4807011/
https://www.ncbi.nlm.nih.gov/pubmed/27010837
http://dx.doi.org/10.1371/journal.pone.0152013
_version_ 1782423326442913792
author Witkowski, Travis A.
Grice, Alison N.
Stinnett, DeAnna B.
Wells, Whitney K.
Peterson, Megan A.
Hare, Janelle M.
author_facet Witkowski, Travis A.
Grice, Alison N.
Stinnett, DeAnna B.
Wells, Whitney K.
Peterson, Megan A.
Hare, Janelle M.
author_sort Witkowski, Travis A.
collection PubMed
description In many bacteria, the DNA damage response induces genes (SOS genes) that were repressed by LexA. LexA represses transcription by binding to SOS promoters via a helix-turn-helix motif in its N-terminal domain (NTD). Upon DNA damage, LexA cleaves itself and allows induction of transcription. In Acinetobacter baumannii and Acinetobacter baylyi, multiple genes are induced by DNA damage, and although the Acinetobacter genus lacks LexA, a homolog of the error-prone polymerase subunit UmuD, called UmuDAb, regulates some DNA damage-induced genes. The mechanism of UmuDAb regulation has not been determined. We constructed UmuDAb mutant strains of A. baylyi to test whether UmuDAb mediates gene regulation through LexA-like repressor actions consisting of relief of repression through self-cleavage after DNA damage. Real-time quantitative PCR experiments in both a null umuDAb mutant and an NTD mutant showed that the DNA damage-inducible, UmuDAb-regulated gene ddrR was highly expressed even in the absence of DNA damage. Protein modeling identified a potential LexA-like helix-turn-helix structure in the UmuDAb NTD, which when disrupted, also relieved ddrR and umuDAb repression under non-inducing conditions. Mutations in a putative SOS box in the shared umuDAb-ddrR promoter region similarly relieved these genes’ repression under non-inducing conditions. Conversely, cells possessing a cleavage-deficient UmuDAb were unable to induce gene expression after MMC-mediated DNA damage. This evidence of a UmuDAb repressor mechanism was contrasted with the failure of umuDAb to complement an Escherichia coli umuD mutant for UmuD error-prone DNA replication activity. Similarly, A. baumannii null umuDAb mutant cells did not have a reduced UmuDˊ(2)UmuC-mediated mutation rate after DNA damage, suggesting that although this UmuDAb protein may have evolved from a umuDC operon in this genus, it now performs a LexA-like repressor function for a sub-set of DNA damage-induced genes.
format Online
Article
Text
id pubmed-4807011
institution National Center for Biotechnology Information
language English
publishDate 2016
publisher Public Library of Science
record_format MEDLINE/PubMed
spelling pubmed-48070112016-03-25 UmuDAb: An Error-Prone Polymerase Accessory Homolog Whose N-Terminal Domain Is Required for Repression of DNA Damage Inducible Gene Expression in Acinetobacter baylyi Witkowski, Travis A. Grice, Alison N. Stinnett, DeAnna B. Wells, Whitney K. Peterson, Megan A. Hare, Janelle M. PLoS One Research Article In many bacteria, the DNA damage response induces genes (SOS genes) that were repressed by LexA. LexA represses transcription by binding to SOS promoters via a helix-turn-helix motif in its N-terminal domain (NTD). Upon DNA damage, LexA cleaves itself and allows induction of transcription. In Acinetobacter baumannii and Acinetobacter baylyi, multiple genes are induced by DNA damage, and although the Acinetobacter genus lacks LexA, a homolog of the error-prone polymerase subunit UmuD, called UmuDAb, regulates some DNA damage-induced genes. The mechanism of UmuDAb regulation has not been determined. We constructed UmuDAb mutant strains of A. baylyi to test whether UmuDAb mediates gene regulation through LexA-like repressor actions consisting of relief of repression through self-cleavage after DNA damage. Real-time quantitative PCR experiments in both a null umuDAb mutant and an NTD mutant showed that the DNA damage-inducible, UmuDAb-regulated gene ddrR was highly expressed even in the absence of DNA damage. Protein modeling identified a potential LexA-like helix-turn-helix structure in the UmuDAb NTD, which when disrupted, also relieved ddrR and umuDAb repression under non-inducing conditions. Mutations in a putative SOS box in the shared umuDAb-ddrR promoter region similarly relieved these genes’ repression under non-inducing conditions. Conversely, cells possessing a cleavage-deficient UmuDAb were unable to induce gene expression after MMC-mediated DNA damage. This evidence of a UmuDAb repressor mechanism was contrasted with the failure of umuDAb to complement an Escherichia coli umuD mutant for UmuD error-prone DNA replication activity. Similarly, A. baumannii null umuDAb mutant cells did not have a reduced UmuDˊ(2)UmuC-mediated mutation rate after DNA damage, suggesting that although this UmuDAb protein may have evolved from a umuDC operon in this genus, it now performs a LexA-like repressor function for a sub-set of DNA damage-induced genes. Public Library of Science 2016-03-24 /pmc/articles/PMC4807011/ /pubmed/27010837 http://dx.doi.org/10.1371/journal.pone.0152013 Text en © 2016 Witkowski et al http://creativecommons.org/licenses/by/4.0/ 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 use, distribution, and reproduction in any medium, provided the original author and source are credited.
spellingShingle Research Article
Witkowski, Travis A.
Grice, Alison N.
Stinnett, DeAnna B.
Wells, Whitney K.
Peterson, Megan A.
Hare, Janelle M.
UmuDAb: An Error-Prone Polymerase Accessory Homolog Whose N-Terminal Domain Is Required for Repression of DNA Damage Inducible Gene Expression in Acinetobacter baylyi
title UmuDAb: An Error-Prone Polymerase Accessory Homolog Whose N-Terminal Domain Is Required for Repression of DNA Damage Inducible Gene Expression in Acinetobacter baylyi
title_full UmuDAb: An Error-Prone Polymerase Accessory Homolog Whose N-Terminal Domain Is Required for Repression of DNA Damage Inducible Gene Expression in Acinetobacter baylyi
title_fullStr UmuDAb: An Error-Prone Polymerase Accessory Homolog Whose N-Terminal Domain Is Required for Repression of DNA Damage Inducible Gene Expression in Acinetobacter baylyi
title_full_unstemmed UmuDAb: An Error-Prone Polymerase Accessory Homolog Whose N-Terminal Domain Is Required for Repression of DNA Damage Inducible Gene Expression in Acinetobacter baylyi
title_short UmuDAb: An Error-Prone Polymerase Accessory Homolog Whose N-Terminal Domain Is Required for Repression of DNA Damage Inducible Gene Expression in Acinetobacter baylyi
title_sort umudab: an error-prone polymerase accessory homolog whose n-terminal domain is required for repression of dna damage inducible gene expression in acinetobacter baylyi
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4807011/
https://www.ncbi.nlm.nih.gov/pubmed/27010837
http://dx.doi.org/10.1371/journal.pone.0152013
work_keys_str_mv AT witkowskitravisa umudabanerrorpronepolymeraseaccessoryhomologwhosenterminaldomainisrequiredforrepressionofdnadamageinduciblegeneexpressioninacinetobacterbaylyi
AT gricealisonn umudabanerrorpronepolymeraseaccessoryhomologwhosenterminaldomainisrequiredforrepressionofdnadamageinduciblegeneexpressioninacinetobacterbaylyi
AT stinnettdeannab umudabanerrorpronepolymeraseaccessoryhomologwhosenterminaldomainisrequiredforrepressionofdnadamageinduciblegeneexpressioninacinetobacterbaylyi
AT wellswhitneyk umudabanerrorpronepolymeraseaccessoryhomologwhosenterminaldomainisrequiredforrepressionofdnadamageinduciblegeneexpressioninacinetobacterbaylyi
AT petersonmegana umudabanerrorpronepolymeraseaccessoryhomologwhosenterminaldomainisrequiredforrepressionofdnadamageinduciblegeneexpressioninacinetobacterbaylyi
AT harejanellem umudabanerrorpronepolymeraseaccessoryhomologwhosenterminaldomainisrequiredforrepressionofdnadamageinduciblegeneexpressioninacinetobacterbaylyi