Phosphorothioation of foreign DNA influences the transformation efficiency in Clostridium perfringens NCTC8239.


Journal

Anaerobe
ISSN: 1095-8274
Titre abrégé: Anaerobe
Pays: England
ID NLM: 9505216

Informations de publication

Date de publication:
Feb 2020
Historique:
received: 10 06 2019
revised: 08 08 2019
accepted: 08 08 2019
pubmed: 12 8 2019
medline: 2 10 2020
entrez: 12 8 2019
Statut: ppublish

Résumé

Major advances in Clostridium perfringens genetics have been achieved through the development of electroporation-induced transformation; however, highly transformable strains are still limited. SM101 is the only useful strain for genetic manipulation via transformation in C. perfringens causing foodborne illness (FBI). We focused on the FBI strain NCTC8239, which is transformed at a low frequency, because it has a gene cassette that is predicted to encode enzymes involved in DNA phosphorothioation (PT). The oxidant-dependent degradation of NCTC8239 genomic DNA suggested that the genome is PT-modified. When foreign DNA was PT-modified using a plasmid expressing Salmonella enterica PT modification enzymes, the transformation efficiency of NCTC8239 was significantly higher than that using an unmodified plasmid. We then attempted to establish a highly transformable derivative of NCTC8239, and focused on DptFGH, which are predicted to be PT restriction enzymes. A dptG-null mutant exhibited significantly higher transformation efficiency with unmodified foreign DNA than did the wild-type strain. Furthermore, the mutant was transformed with the unmodified plasmid as efficiently as with a PT-modified plasmid, implying that DptG is involved in PT-dependent restriction. Thus, the present results revealed that PT modifications of foreign DNA influence the transformation frequency of NCTC8239 and suggest that PT is a factor contributing to transformation efficiency in NCTC8239.

Identifiants

pubmed: 31401257
pii: S1075-9964(19)30145-3
doi: 10.1016/j.anaerobe.2019.102085
pii:
doi:

Substances chimiques

Oxidants 0
Phosphorothioate Oligonucleotides 0
Thionucleosides 0

Types de publication

Journal Article

Langues

eng

Sous-ensembles de citation

IM

Pagination

102085

Informations de copyright

Copyright © 2019 Elsevier Ltd. All rights reserved.

Auteurs

Mayo Yasugi (M)

Graduate School of Life and Environmental Sciences, Osaka Prefecture University, Izumisano, Osaka, Japan. Electronic address: shishimaru@vet.osakafu-u.ac.jp.

Daisuke Motooka (D)

Research Institute for Microbial Diseases, Osaka University, Suita, Osaka, Japan.

Shota Nakamura (S)

Research Institute for Microbial Diseases, Osaka University, Suita, Osaka, Japan.

Masami Miyake (M)

Graduate School of Life and Environmental Sciences, Osaka Prefecture University, Izumisano, Osaka, Japan.

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