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Construction and characterization of bacterial artificial chromosomes harboring the full-length genome of a highly attenuated vaccinia virus LC16m8

LC16m8 (m8), a highly attenuated vaccinia virus (VAC) strain, was developed as a smallpox vaccine, and its safety and immunogenicity have been confirmed. Here, we aimed to develop a system that recovers infectious m8 from a bacterial artificial chromosome (BAC) that retains the full-length viral gen...

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Autores principales: Yoshikawa, Tomoki, Fujii, Hikaru, Okutani, Akiko, Shibamura, Miho, Omura, Natsumi, Egawa, Kazutaka, Kato, Hirofumi, Inagaki, Takuya, Harada, Shizuko, Yamada, Souichi, Morikawa, Shigeru, Saijo, Masayuki
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Public Library of Science 2018
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5825015/
https://www.ncbi.nlm.nih.gov/pubmed/29474493
http://dx.doi.org/10.1371/journal.pone.0192725
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author Yoshikawa, Tomoki
Fujii, Hikaru
Okutani, Akiko
Shibamura, Miho
Omura, Natsumi
Egawa, Kazutaka
Kato, Hirofumi
Inagaki, Takuya
Harada, Shizuko
Yamada, Souichi
Morikawa, Shigeru
Saijo, Masayuki
author_facet Yoshikawa, Tomoki
Fujii, Hikaru
Okutani, Akiko
Shibamura, Miho
Omura, Natsumi
Egawa, Kazutaka
Kato, Hirofumi
Inagaki, Takuya
Harada, Shizuko
Yamada, Souichi
Morikawa, Shigeru
Saijo, Masayuki
author_sort Yoshikawa, Tomoki
collection PubMed
description LC16m8 (m8), a highly attenuated vaccinia virus (VAC) strain, was developed as a smallpox vaccine, and its safety and immunogenicity have been confirmed. Here, we aimed to develop a system that recovers infectious m8 from a bacterial artificial chromosome (BAC) that retains the full-length viral genomic DNA (m8-BAC system). The infectious virus was successfully recovered from a VAC-BAC plasmid, named pLC16m8-BAC. Furthermore, the bacterial replicon-free virus was generated by intramolecular homologous recombination and was successfully recovered from a modified VAC-BAC plasmid, named pLC16m8.8S-BAC. Also, the growth of the recovered virus was indistinguishable from that of authentic m8. The full genome sequence of the plasmid, which harbors identical inverted terminal repeats (ITR) to that of authentic m8, was determined by long-read next-generation sequencing (NGS). The ITR contains x 18 to 32 of the 70 and x 30 to 45 of 54 base pair tandem repeats, and the number of tandem repeats was different between the ITR left and right. Since the virus recovered from pLC16m8.8S-BAC was expected to retain the identical viral genome to that of m8, including the ITR, a reference-based alignment following a short-read NGS was performed to validate the sequence of the recovered virus. Based on the pattern of coverage depth in the ITR, no remarkable differences were observed between the virus and m8, and the other region was confirmed to be identical as well. In summary, this new system can recover the virus, which is geno- and phenotypically indistinguishable from authentic m8.
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spelling pubmed-58250152018-03-19 Construction and characterization of bacterial artificial chromosomes harboring the full-length genome of a highly attenuated vaccinia virus LC16m8 Yoshikawa, Tomoki Fujii, Hikaru Okutani, Akiko Shibamura, Miho Omura, Natsumi Egawa, Kazutaka Kato, Hirofumi Inagaki, Takuya Harada, Shizuko Yamada, Souichi Morikawa, Shigeru Saijo, Masayuki PLoS One Research Article LC16m8 (m8), a highly attenuated vaccinia virus (VAC) strain, was developed as a smallpox vaccine, and its safety and immunogenicity have been confirmed. Here, we aimed to develop a system that recovers infectious m8 from a bacterial artificial chromosome (BAC) that retains the full-length viral genomic DNA (m8-BAC system). The infectious virus was successfully recovered from a VAC-BAC plasmid, named pLC16m8-BAC. Furthermore, the bacterial replicon-free virus was generated by intramolecular homologous recombination and was successfully recovered from a modified VAC-BAC plasmid, named pLC16m8.8S-BAC. Also, the growth of the recovered virus was indistinguishable from that of authentic m8. The full genome sequence of the plasmid, which harbors identical inverted terminal repeats (ITR) to that of authentic m8, was determined by long-read next-generation sequencing (NGS). The ITR contains x 18 to 32 of the 70 and x 30 to 45 of 54 base pair tandem repeats, and the number of tandem repeats was different between the ITR left and right. Since the virus recovered from pLC16m8.8S-BAC was expected to retain the identical viral genome to that of m8, including the ITR, a reference-based alignment following a short-read NGS was performed to validate the sequence of the recovered virus. Based on the pattern of coverage depth in the ITR, no remarkable differences were observed between the virus and m8, and the other region was confirmed to be identical as well. In summary, this new system can recover the virus, which is geno- and phenotypically indistinguishable from authentic m8. Public Library of Science 2018-02-23 /pmc/articles/PMC5825015/ /pubmed/29474493 http://dx.doi.org/10.1371/journal.pone.0192725 Text en © 2018 Yoshikawa 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
Yoshikawa, Tomoki
Fujii, Hikaru
Okutani, Akiko
Shibamura, Miho
Omura, Natsumi
Egawa, Kazutaka
Kato, Hirofumi
Inagaki, Takuya
Harada, Shizuko
Yamada, Souichi
Morikawa, Shigeru
Saijo, Masayuki
Construction and characterization of bacterial artificial chromosomes harboring the full-length genome of a highly attenuated vaccinia virus LC16m8
title Construction and characterization of bacterial artificial chromosomes harboring the full-length genome of a highly attenuated vaccinia virus LC16m8
title_full Construction and characterization of bacterial artificial chromosomes harboring the full-length genome of a highly attenuated vaccinia virus LC16m8
title_fullStr Construction and characterization of bacterial artificial chromosomes harboring the full-length genome of a highly attenuated vaccinia virus LC16m8
title_full_unstemmed Construction and characterization of bacterial artificial chromosomes harboring the full-length genome of a highly attenuated vaccinia virus LC16m8
title_short Construction and characterization of bacterial artificial chromosomes harboring the full-length genome of a highly attenuated vaccinia virus LC16m8
title_sort construction and characterization of bacterial artificial chromosomes harboring the full-length genome of a highly attenuated vaccinia virus lc16m8
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5825015/
https://www.ncbi.nlm.nih.gov/pubmed/29474493
http://dx.doi.org/10.1371/journal.pone.0192725
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