Cargando…

A Novel Peptide Derived from the Fusion Protein Heptad Repeat Inhibits Replication of Subacute Sclerosing Panencephalitis Virus In Vitro and In Vivo

Subacute sclerosing panencephalitis (SSPE) is a persistent, progressive, and fatal degenerative disease resulting from persistent measles virus (MV) infection of the central nervous system. Most drugs used to treat SSPE have been reported to have limited effects. Therefore, novel therapeutic strateg...

Descripción completa

Detalles Bibliográficos
Autores principales: Watanabe, Masahiro, Hashimoto, Koichi, Abe, Yusaku, Kodama, Eiichi N., Nabika, Ryota, Oishi, Shinya, Ohara, Shinichiro, Sato, Masatoki, Kawasaki, Yukihiko, Fujii, Nobutaka, Hosoya, Mitsuaki
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Public Library of Science 2016
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5017735/
https://www.ncbi.nlm.nih.gov/pubmed/27612283
http://dx.doi.org/10.1371/journal.pone.0162823
_version_ 1782452808536031232
author Watanabe, Masahiro
Hashimoto, Koichi
Abe, Yusaku
Kodama, Eiichi N.
Nabika, Ryota
Oishi, Shinya
Ohara, Shinichiro
Sato, Masatoki
Kawasaki, Yukihiko
Fujii, Nobutaka
Hosoya, Mitsuaki
author_facet Watanabe, Masahiro
Hashimoto, Koichi
Abe, Yusaku
Kodama, Eiichi N.
Nabika, Ryota
Oishi, Shinya
Ohara, Shinichiro
Sato, Masatoki
Kawasaki, Yukihiko
Fujii, Nobutaka
Hosoya, Mitsuaki
author_sort Watanabe, Masahiro
collection PubMed
description Subacute sclerosing panencephalitis (SSPE) is a persistent, progressive, and fatal degenerative disease resulting from persistent measles virus (MV) infection of the central nervous system. Most drugs used to treat SSPE have been reported to have limited effects. Therefore, novel therapeutic strategies are urgently required. The SSPE virus, a variant MV strain, differs virologically from wild-type MV strain. One characteristic of the SSPE virus is its defective production of cell-free virus, which leaves cell-to-cell infection as the major mechanism of viral dissemination. The fusion protein plays an essential role in this cell-to-cell spread. It contains two critical heptad repeat regions that form a six-helix bundle in the trimer similar to most viral fusion proteins. In the case of human immunodeficiency virus type-1 (HIV-1), a synthetic peptide derived from the heptad repeat region of the fusion protein enfuvirtide inhibits viral replication and is clinically approved as an anti-HIV-1 agent. The heptad repeat regions of HIV-1 are structurally and functionally similar to those of the MV fusion protein. We therefore designed novel peptides derived from the fusion protein heptad repeat region of the MV and examined their effects on the measles and SSPE virus replication in vitro and in vivo. Some of these synthetic novel peptides demonstrated high antiviral activity against both the measles (Edmonston strain) and SSPE (Yamagata-1 strain) viruses at nanomolar concentrations with no cytotoxicity in vitro. In particular, intracranial administration of one of the synthetic peptides increased the survival rate from 0% to 67% in an SSPE virus-infected nude mouse model.
format Online
Article
Text
id pubmed-5017735
institution National Center for Biotechnology Information
language English
publishDate 2016
publisher Public Library of Science
record_format MEDLINE/PubMed
spelling pubmed-50177352016-09-27 A Novel Peptide Derived from the Fusion Protein Heptad Repeat Inhibits Replication of Subacute Sclerosing Panencephalitis Virus In Vitro and In Vivo Watanabe, Masahiro Hashimoto, Koichi Abe, Yusaku Kodama, Eiichi N. Nabika, Ryota Oishi, Shinya Ohara, Shinichiro Sato, Masatoki Kawasaki, Yukihiko Fujii, Nobutaka Hosoya, Mitsuaki PLoS One Research Article Subacute sclerosing panencephalitis (SSPE) is a persistent, progressive, and fatal degenerative disease resulting from persistent measles virus (MV) infection of the central nervous system. Most drugs used to treat SSPE have been reported to have limited effects. Therefore, novel therapeutic strategies are urgently required. The SSPE virus, a variant MV strain, differs virologically from wild-type MV strain. One characteristic of the SSPE virus is its defective production of cell-free virus, which leaves cell-to-cell infection as the major mechanism of viral dissemination. The fusion protein plays an essential role in this cell-to-cell spread. It contains two critical heptad repeat regions that form a six-helix bundle in the trimer similar to most viral fusion proteins. In the case of human immunodeficiency virus type-1 (HIV-1), a synthetic peptide derived from the heptad repeat region of the fusion protein enfuvirtide inhibits viral replication and is clinically approved as an anti-HIV-1 agent. The heptad repeat regions of HIV-1 are structurally and functionally similar to those of the MV fusion protein. We therefore designed novel peptides derived from the fusion protein heptad repeat region of the MV and examined their effects on the measles and SSPE virus replication in vitro and in vivo. Some of these synthetic novel peptides demonstrated high antiviral activity against both the measles (Edmonston strain) and SSPE (Yamagata-1 strain) viruses at nanomolar concentrations with no cytotoxicity in vitro. In particular, intracranial administration of one of the synthetic peptides increased the survival rate from 0% to 67% in an SSPE virus-infected nude mouse model. Public Library of Science 2016-09-09 /pmc/articles/PMC5017735/ /pubmed/27612283 http://dx.doi.org/10.1371/journal.pone.0162823 Text en © 2016 Watanabe 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
Watanabe, Masahiro
Hashimoto, Koichi
Abe, Yusaku
Kodama, Eiichi N.
Nabika, Ryota
Oishi, Shinya
Ohara, Shinichiro
Sato, Masatoki
Kawasaki, Yukihiko
Fujii, Nobutaka
Hosoya, Mitsuaki
A Novel Peptide Derived from the Fusion Protein Heptad Repeat Inhibits Replication of Subacute Sclerosing Panencephalitis Virus In Vitro and In Vivo
title A Novel Peptide Derived from the Fusion Protein Heptad Repeat Inhibits Replication of Subacute Sclerosing Panencephalitis Virus In Vitro and In Vivo
title_full A Novel Peptide Derived from the Fusion Protein Heptad Repeat Inhibits Replication of Subacute Sclerosing Panencephalitis Virus In Vitro and In Vivo
title_fullStr A Novel Peptide Derived from the Fusion Protein Heptad Repeat Inhibits Replication of Subacute Sclerosing Panencephalitis Virus In Vitro and In Vivo
title_full_unstemmed A Novel Peptide Derived from the Fusion Protein Heptad Repeat Inhibits Replication of Subacute Sclerosing Panencephalitis Virus In Vitro and In Vivo
title_short A Novel Peptide Derived from the Fusion Protein Heptad Repeat Inhibits Replication of Subacute Sclerosing Panencephalitis Virus In Vitro and In Vivo
title_sort novel peptide derived from the fusion protein heptad repeat inhibits replication of subacute sclerosing panencephalitis virus in vitro and in vivo
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5017735/
https://www.ncbi.nlm.nih.gov/pubmed/27612283
http://dx.doi.org/10.1371/journal.pone.0162823
work_keys_str_mv AT watanabemasahiro anovelpeptidederivedfromthefusionproteinheptadrepeatinhibitsreplicationofsubacutesclerosingpanencephalitisvirusinvitroandinvivo
AT hashimotokoichi anovelpeptidederivedfromthefusionproteinheptadrepeatinhibitsreplicationofsubacutesclerosingpanencephalitisvirusinvitroandinvivo
AT abeyusaku anovelpeptidederivedfromthefusionproteinheptadrepeatinhibitsreplicationofsubacutesclerosingpanencephalitisvirusinvitroandinvivo
AT kodamaeiichin anovelpeptidederivedfromthefusionproteinheptadrepeatinhibitsreplicationofsubacutesclerosingpanencephalitisvirusinvitroandinvivo
AT nabikaryota anovelpeptidederivedfromthefusionproteinheptadrepeatinhibitsreplicationofsubacutesclerosingpanencephalitisvirusinvitroandinvivo
AT oishishinya anovelpeptidederivedfromthefusionproteinheptadrepeatinhibitsreplicationofsubacutesclerosingpanencephalitisvirusinvitroandinvivo
AT oharashinichiro anovelpeptidederivedfromthefusionproteinheptadrepeatinhibitsreplicationofsubacutesclerosingpanencephalitisvirusinvitroandinvivo
AT satomasatoki anovelpeptidederivedfromthefusionproteinheptadrepeatinhibitsreplicationofsubacutesclerosingpanencephalitisvirusinvitroandinvivo
AT kawasakiyukihiko anovelpeptidederivedfromthefusionproteinheptadrepeatinhibitsreplicationofsubacutesclerosingpanencephalitisvirusinvitroandinvivo
AT fujiinobutaka anovelpeptidederivedfromthefusionproteinheptadrepeatinhibitsreplicationofsubacutesclerosingpanencephalitisvirusinvitroandinvivo
AT hosoyamitsuaki anovelpeptidederivedfromthefusionproteinheptadrepeatinhibitsreplicationofsubacutesclerosingpanencephalitisvirusinvitroandinvivo
AT watanabemasahiro novelpeptidederivedfromthefusionproteinheptadrepeatinhibitsreplicationofsubacutesclerosingpanencephalitisvirusinvitroandinvivo
AT hashimotokoichi novelpeptidederivedfromthefusionproteinheptadrepeatinhibitsreplicationofsubacutesclerosingpanencephalitisvirusinvitroandinvivo
AT abeyusaku novelpeptidederivedfromthefusionproteinheptadrepeatinhibitsreplicationofsubacutesclerosingpanencephalitisvirusinvitroandinvivo
AT kodamaeiichin novelpeptidederivedfromthefusionproteinheptadrepeatinhibitsreplicationofsubacutesclerosingpanencephalitisvirusinvitroandinvivo
AT nabikaryota novelpeptidederivedfromthefusionproteinheptadrepeatinhibitsreplicationofsubacutesclerosingpanencephalitisvirusinvitroandinvivo
AT oishishinya novelpeptidederivedfromthefusionproteinheptadrepeatinhibitsreplicationofsubacutesclerosingpanencephalitisvirusinvitroandinvivo
AT oharashinichiro novelpeptidederivedfromthefusionproteinheptadrepeatinhibitsreplicationofsubacutesclerosingpanencephalitisvirusinvitroandinvivo
AT satomasatoki novelpeptidederivedfromthefusionproteinheptadrepeatinhibitsreplicationofsubacutesclerosingpanencephalitisvirusinvitroandinvivo
AT kawasakiyukihiko novelpeptidederivedfromthefusionproteinheptadrepeatinhibitsreplicationofsubacutesclerosingpanencephalitisvirusinvitroandinvivo
AT fujiinobutaka novelpeptidederivedfromthefusionproteinheptadrepeatinhibitsreplicationofsubacutesclerosingpanencephalitisvirusinvitroandinvivo
AT hosoyamitsuaki novelpeptidederivedfromthefusionproteinheptadrepeatinhibitsreplicationofsubacutesclerosingpanencephalitisvirusinvitroandinvivo