Cargando…

The Peptide A-3302-B Isolated from a Marine Bacterium Micromonospora sp. Inhibits HSV-2 Infection by Preventing the Viral Egress from Host Cells

Herpesviruses are highly prevalent in the human population, and frequent reactivations occur throughout life. Despite antiviral drugs against herpetic infections, the increasing appearance of drug-resistant viral strains and their adverse effects prompt the research of novel antiherpetic drugs for t...

Descripción completa

Detalles Bibliográficos
Autores principales: Sureram, Sanya, Arduino, Irene, Ueoka, Reiko, Rittà, Massimo, Francese, Rachele, Srivibool, Rattanaporn, Darshana, Dhanushka, Piel, Jörn, Ruchirawat, Somsak, Muratori, Luisa, Lembo, David, Kittakoop, Prasat, Donalisio, Manuela
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2022
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8778767/
https://www.ncbi.nlm.nih.gov/pubmed/35055133
http://dx.doi.org/10.3390/ijms23020947
_version_ 1784637404012871680
author Sureram, Sanya
Arduino, Irene
Ueoka, Reiko
Rittà, Massimo
Francese, Rachele
Srivibool, Rattanaporn
Darshana, Dhanushka
Piel, Jörn
Ruchirawat, Somsak
Muratori, Luisa
Lembo, David
Kittakoop, Prasat
Donalisio, Manuela
author_facet Sureram, Sanya
Arduino, Irene
Ueoka, Reiko
Rittà, Massimo
Francese, Rachele
Srivibool, Rattanaporn
Darshana, Dhanushka
Piel, Jörn
Ruchirawat, Somsak
Muratori, Luisa
Lembo, David
Kittakoop, Prasat
Donalisio, Manuela
author_sort Sureram, Sanya
collection PubMed
description Herpesviruses are highly prevalent in the human population, and frequent reactivations occur throughout life. Despite antiviral drugs against herpetic infections, the increasing appearance of drug-resistant viral strains and their adverse effects prompt the research of novel antiherpetic drugs for treating lesions. Peptides obtained from natural sources have recently become of particular interest for antiviral therapy applications. In this work, we investigated the antiviral activity of the peptide A-3302-B, isolated from a marine bacterium, Micromonospora sp., strain MAG 9-7, against herpes simplex virus type 1, type 2, and human cytomegalovirus. Results showed that the peptide exerted a specific inhibitory activity against HSV-2 with an EC(50) value of 14 μM. Specific antiviral assays were performed to investigate the mechanism of action of A-3302-B. We demonstrated that the peptide did not affect the expression of viral proteins, but it inhibited the late events of the HSV-2 replicative cycle. In detail, it reduced the cell-to-cell virus spread and the transmission of the extracellular free virus by preventing the egress of HSV-2 progeny from the infected cells. The dual antiviral and previously reported anti-inflammatory activities of A-3302-B, and its effect against an acyclovir-resistant HSV-2 strain are attractive features for developing a therapeutic to reduce the transmission of HSV-2 infections.
format Online
Article
Text
id pubmed-8778767
institution National Center for Biotechnology Information
language English
publishDate 2022
publisher MDPI
record_format MEDLINE/PubMed
spelling pubmed-87787672022-01-22 The Peptide A-3302-B Isolated from a Marine Bacterium Micromonospora sp. Inhibits HSV-2 Infection by Preventing the Viral Egress from Host Cells Sureram, Sanya Arduino, Irene Ueoka, Reiko Rittà, Massimo Francese, Rachele Srivibool, Rattanaporn Darshana, Dhanushka Piel, Jörn Ruchirawat, Somsak Muratori, Luisa Lembo, David Kittakoop, Prasat Donalisio, Manuela Int J Mol Sci Article Herpesviruses are highly prevalent in the human population, and frequent reactivations occur throughout life. Despite antiviral drugs against herpetic infections, the increasing appearance of drug-resistant viral strains and their adverse effects prompt the research of novel antiherpetic drugs for treating lesions. Peptides obtained from natural sources have recently become of particular interest for antiviral therapy applications. In this work, we investigated the antiviral activity of the peptide A-3302-B, isolated from a marine bacterium, Micromonospora sp., strain MAG 9-7, against herpes simplex virus type 1, type 2, and human cytomegalovirus. Results showed that the peptide exerted a specific inhibitory activity against HSV-2 with an EC(50) value of 14 μM. Specific antiviral assays were performed to investigate the mechanism of action of A-3302-B. We demonstrated that the peptide did not affect the expression of viral proteins, but it inhibited the late events of the HSV-2 replicative cycle. In detail, it reduced the cell-to-cell virus spread and the transmission of the extracellular free virus by preventing the egress of HSV-2 progeny from the infected cells. The dual antiviral and previously reported anti-inflammatory activities of A-3302-B, and its effect against an acyclovir-resistant HSV-2 strain are attractive features for developing a therapeutic to reduce the transmission of HSV-2 infections. MDPI 2022-01-15 /pmc/articles/PMC8778767/ /pubmed/35055133 http://dx.doi.org/10.3390/ijms23020947 Text en © 2022 by the authors. https://creativecommons.org/licenses/by/4.0/Licensee MDPI, Basel, Switzerland. This article is an open access article distributed under the terms and conditions of the Creative Commons Attribution (CC BY) license (https://creativecommons.org/licenses/by/4.0/).
spellingShingle Article
Sureram, Sanya
Arduino, Irene
Ueoka, Reiko
Rittà, Massimo
Francese, Rachele
Srivibool, Rattanaporn
Darshana, Dhanushka
Piel, Jörn
Ruchirawat, Somsak
Muratori, Luisa
Lembo, David
Kittakoop, Prasat
Donalisio, Manuela
The Peptide A-3302-B Isolated from a Marine Bacterium Micromonospora sp. Inhibits HSV-2 Infection by Preventing the Viral Egress from Host Cells
title The Peptide A-3302-B Isolated from a Marine Bacterium Micromonospora sp. Inhibits HSV-2 Infection by Preventing the Viral Egress from Host Cells
title_full The Peptide A-3302-B Isolated from a Marine Bacterium Micromonospora sp. Inhibits HSV-2 Infection by Preventing the Viral Egress from Host Cells
title_fullStr The Peptide A-3302-B Isolated from a Marine Bacterium Micromonospora sp. Inhibits HSV-2 Infection by Preventing the Viral Egress from Host Cells
title_full_unstemmed The Peptide A-3302-B Isolated from a Marine Bacterium Micromonospora sp. Inhibits HSV-2 Infection by Preventing the Viral Egress from Host Cells
title_short The Peptide A-3302-B Isolated from a Marine Bacterium Micromonospora sp. Inhibits HSV-2 Infection by Preventing the Viral Egress from Host Cells
title_sort peptide a-3302-b isolated from a marine bacterium micromonospora sp. inhibits hsv-2 infection by preventing the viral egress from host cells
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8778767/
https://www.ncbi.nlm.nih.gov/pubmed/35055133
http://dx.doi.org/10.3390/ijms23020947
work_keys_str_mv AT sureramsanya thepeptidea3302bisolatedfromamarinebacteriummicromonosporaspinhibitshsv2infectionbypreventingtheviralegressfromhostcells
AT arduinoirene thepeptidea3302bisolatedfromamarinebacteriummicromonosporaspinhibitshsv2infectionbypreventingtheviralegressfromhostcells
AT ueokareiko thepeptidea3302bisolatedfromamarinebacteriummicromonosporaspinhibitshsv2infectionbypreventingtheviralegressfromhostcells
AT rittamassimo thepeptidea3302bisolatedfromamarinebacteriummicromonosporaspinhibitshsv2infectionbypreventingtheviralegressfromhostcells
AT franceserachele thepeptidea3302bisolatedfromamarinebacteriummicromonosporaspinhibitshsv2infectionbypreventingtheviralegressfromhostcells
AT sriviboolrattanaporn thepeptidea3302bisolatedfromamarinebacteriummicromonosporaspinhibitshsv2infectionbypreventingtheviralegressfromhostcells
AT darshanadhanushka thepeptidea3302bisolatedfromamarinebacteriummicromonosporaspinhibitshsv2infectionbypreventingtheviralegressfromhostcells
AT pieljorn thepeptidea3302bisolatedfromamarinebacteriummicromonosporaspinhibitshsv2infectionbypreventingtheviralegressfromhostcells
AT ruchirawatsomsak thepeptidea3302bisolatedfromamarinebacteriummicromonosporaspinhibitshsv2infectionbypreventingtheviralegressfromhostcells
AT muratoriluisa thepeptidea3302bisolatedfromamarinebacteriummicromonosporaspinhibitshsv2infectionbypreventingtheviralegressfromhostcells
AT lembodavid thepeptidea3302bisolatedfromamarinebacteriummicromonosporaspinhibitshsv2infectionbypreventingtheviralegressfromhostcells
AT kittakoopprasat thepeptidea3302bisolatedfromamarinebacteriummicromonosporaspinhibitshsv2infectionbypreventingtheviralegressfromhostcells
AT donalisiomanuela thepeptidea3302bisolatedfromamarinebacteriummicromonosporaspinhibitshsv2infectionbypreventingtheviralegressfromhostcells
AT sureramsanya peptidea3302bisolatedfromamarinebacteriummicromonosporaspinhibitshsv2infectionbypreventingtheviralegressfromhostcells
AT arduinoirene peptidea3302bisolatedfromamarinebacteriummicromonosporaspinhibitshsv2infectionbypreventingtheviralegressfromhostcells
AT ueokareiko peptidea3302bisolatedfromamarinebacteriummicromonosporaspinhibitshsv2infectionbypreventingtheviralegressfromhostcells
AT rittamassimo peptidea3302bisolatedfromamarinebacteriummicromonosporaspinhibitshsv2infectionbypreventingtheviralegressfromhostcells
AT franceserachele peptidea3302bisolatedfromamarinebacteriummicromonosporaspinhibitshsv2infectionbypreventingtheviralegressfromhostcells
AT sriviboolrattanaporn peptidea3302bisolatedfromamarinebacteriummicromonosporaspinhibitshsv2infectionbypreventingtheviralegressfromhostcells
AT darshanadhanushka peptidea3302bisolatedfromamarinebacteriummicromonosporaspinhibitshsv2infectionbypreventingtheviralegressfromhostcells
AT pieljorn peptidea3302bisolatedfromamarinebacteriummicromonosporaspinhibitshsv2infectionbypreventingtheviralegressfromhostcells
AT ruchirawatsomsak peptidea3302bisolatedfromamarinebacteriummicromonosporaspinhibitshsv2infectionbypreventingtheviralegressfromhostcells
AT muratoriluisa peptidea3302bisolatedfromamarinebacteriummicromonosporaspinhibitshsv2infectionbypreventingtheviralegressfromhostcells
AT lembodavid peptidea3302bisolatedfromamarinebacteriummicromonosporaspinhibitshsv2infectionbypreventingtheviralegressfromhostcells
AT kittakoopprasat peptidea3302bisolatedfromamarinebacteriummicromonosporaspinhibitshsv2infectionbypreventingtheviralegressfromhostcells
AT donalisiomanuela peptidea3302bisolatedfromamarinebacteriummicromonosporaspinhibitshsv2infectionbypreventingtheviralegressfromhostcells