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Functional genomics reveals the toxin–antitoxin repertoire and AbiE activity in Serratia

Bacteriophage defences are divided into innate and adaptive systems. Serratia sp. ATCC 39006 has three CRISPR-Cas adaptive immune systems, but its innate immune repertoire is unknown. Here, we re-sequenced and annotated the Serratia genome and predicted its toxin–antitoxin (TA) systems. TA systems c...

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Autores principales: Hampton, Hannah G., Smith, Leah M., Ferguson, Shaun, Meaden, Sean, Jackson, Simon A., Fineran, Peter C.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Microbiology Society 2020
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7725324/
https://www.ncbi.nlm.nih.gov/pubmed/33074086
http://dx.doi.org/10.1099/mgen.0.000458
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author Hampton, Hannah G.
Smith, Leah M.
Ferguson, Shaun
Meaden, Sean
Jackson, Simon A.
Fineran, Peter C.
author_facet Hampton, Hannah G.
Smith, Leah M.
Ferguson, Shaun
Meaden, Sean
Jackson, Simon A.
Fineran, Peter C.
author_sort Hampton, Hannah G.
collection PubMed
description Bacteriophage defences are divided into innate and adaptive systems. Serratia sp. ATCC 39006 has three CRISPR-Cas adaptive immune systems, but its innate immune repertoire is unknown. Here, we re-sequenced and annotated the Serratia genome and predicted its toxin–antitoxin (TA) systems. TA systems can provide innate phage defence through abortive infection by causing infected cells to ‘shut down’, limiting phage propagation. To assess TA system function on a genome-wide scale, we utilized transposon insertion and RNA sequencing. Of the 32 TA systems predicted bioinformatically, 4 resembled pseudogenes and 11 were demonstrated to be functional based on transposon mutagenesis. Three functional systems belonged to the poorly characterized but widespread, AbiE, abortive infection/TA family. AbiE is a type IV TA system with a predicted nucleotidyltransferase toxin. To investigate the mode of action of this toxin, we measured the transcriptional response to AbiEii expression. We observed dysregulated levels of tRNAs and propose that the toxin targets tRNAs resulting in bacteriostasis. A recent report on a related toxin shows this occurs through addition of nucleotides to tRNA(s). This study has demonstrated the utility of functional genomics for probing TA function in a high-throughput manner, defined the TA repertoire in Serratia and shown the consequences of AbiE induction.
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spelling pubmed-77253242020-12-14 Functional genomics reveals the toxin–antitoxin repertoire and AbiE activity in Serratia Hampton, Hannah G. Smith, Leah M. Ferguson, Shaun Meaden, Sean Jackson, Simon A. Fineran, Peter C. Microb Genom Research Article Bacteriophage defences are divided into innate and adaptive systems. Serratia sp. ATCC 39006 has three CRISPR-Cas adaptive immune systems, but its innate immune repertoire is unknown. Here, we re-sequenced and annotated the Serratia genome and predicted its toxin–antitoxin (TA) systems. TA systems can provide innate phage defence through abortive infection by causing infected cells to ‘shut down’, limiting phage propagation. To assess TA system function on a genome-wide scale, we utilized transposon insertion and RNA sequencing. Of the 32 TA systems predicted bioinformatically, 4 resembled pseudogenes and 11 were demonstrated to be functional based on transposon mutagenesis. Three functional systems belonged to the poorly characterized but widespread, AbiE, abortive infection/TA family. AbiE is a type IV TA system with a predicted nucleotidyltransferase toxin. To investigate the mode of action of this toxin, we measured the transcriptional response to AbiEii expression. We observed dysregulated levels of tRNAs and propose that the toxin targets tRNAs resulting in bacteriostasis. A recent report on a related toxin shows this occurs through addition of nucleotides to tRNA(s). This study has demonstrated the utility of functional genomics for probing TA function in a high-throughput manner, defined the TA repertoire in Serratia and shown the consequences of AbiE induction. Microbiology Society 2020-10-19 /pmc/articles/PMC7725324/ /pubmed/33074086 http://dx.doi.org/10.1099/mgen.0.000458 Text en © 2020 The Authors http://creativecommons.org/licenses/by/4.0/ This is an open-access article distributed under the terms of the Creative Commons Attribution License.
spellingShingle Research Article
Hampton, Hannah G.
Smith, Leah M.
Ferguson, Shaun
Meaden, Sean
Jackson, Simon A.
Fineran, Peter C.
Functional genomics reveals the toxin–antitoxin repertoire and AbiE activity in Serratia
title Functional genomics reveals the toxin–antitoxin repertoire and AbiE activity in Serratia
title_full Functional genomics reveals the toxin–antitoxin repertoire and AbiE activity in Serratia
title_fullStr Functional genomics reveals the toxin–antitoxin repertoire and AbiE activity in Serratia
title_full_unstemmed Functional genomics reveals the toxin–antitoxin repertoire and AbiE activity in Serratia
title_short Functional genomics reveals the toxin–antitoxin repertoire and AbiE activity in Serratia
title_sort functional genomics reveals the toxin–antitoxin repertoire and abie activity in serratia
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7725324/
https://www.ncbi.nlm.nih.gov/pubmed/33074086
http://dx.doi.org/10.1099/mgen.0.000458
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