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AAV-HDV: An Attractive Platform for the In Vivo Study of HDV Biology and the Mechanism of Disease Pathogenesis (†)

Hepatitis delta virus (HDV) infection causes the most severe form of viral hepatitis, but little is known about the molecular mechanisms involved. We have recently developed an HDV mouse model based on the delivery of HDV replication-competent genomes using adeno-associated vectors (AAV), which deve...

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Autores principales: Maestro, Sheila, Gómez-Echarte, Nahia, Camps, Gracián, Usai, Carla, Suárez, Lester, Vales, África, Olagüe, Cristina, Aldabe, Rafael, González-Aseguinolaza, Gloria
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2021
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8145145/
https://www.ncbi.nlm.nih.gov/pubmed/33925087
http://dx.doi.org/10.3390/v13050788
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author Maestro, Sheila
Gómez-Echarte, Nahia
Camps, Gracián
Usai, Carla
Suárez, Lester
Vales, África
Olagüe, Cristina
Aldabe, Rafael
González-Aseguinolaza, Gloria
author_facet Maestro, Sheila
Gómez-Echarte, Nahia
Camps, Gracián
Usai, Carla
Suárez, Lester
Vales, África
Olagüe, Cristina
Aldabe, Rafael
González-Aseguinolaza, Gloria
author_sort Maestro, Sheila
collection PubMed
description Hepatitis delta virus (HDV) infection causes the most severe form of viral hepatitis, but little is known about the molecular mechanisms involved. We have recently developed an HDV mouse model based on the delivery of HDV replication-competent genomes using adeno-associated vectors (AAV), which developed a liver pathology very similar to the human disease and allowed us to perform mechanistic studies. We have generated different AAV-HDV mutants to eliminate the expression of HDV antigens (HDAgs), and we have characterized them both in vitro and in vivo. We confirmed that S-HDAg is essential for HDV replication and cannot be replaced by L-HDAg or host cellular proteins, and that L-HDAg is essential to produce the HDV infectious particle and inhibits its replication. We have also found that lack of L-HDAg resulted in the increase of S-HDAg expression levels and the exacerbation of liver damage, which was associated with an increment in liver inflammation but did not require T cells. Interestingly, early expression of L-HDAg significantly ameliorated the liver damage induced by the mutant expressing only S-HDAg. In summary, the use of AAV-HDV represents a very attractive platform to interrogate in vivo the role of viral components in the HDV life cycle and to better understand the mechanism of HDV-induced liver pathology.
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spelling pubmed-81451452021-05-26 AAV-HDV: An Attractive Platform for the In Vivo Study of HDV Biology and the Mechanism of Disease Pathogenesis (†) Maestro, Sheila Gómez-Echarte, Nahia Camps, Gracián Usai, Carla Suárez, Lester Vales, África Olagüe, Cristina Aldabe, Rafael González-Aseguinolaza, Gloria Viruses Article Hepatitis delta virus (HDV) infection causes the most severe form of viral hepatitis, but little is known about the molecular mechanisms involved. We have recently developed an HDV mouse model based on the delivery of HDV replication-competent genomes using adeno-associated vectors (AAV), which developed a liver pathology very similar to the human disease and allowed us to perform mechanistic studies. We have generated different AAV-HDV mutants to eliminate the expression of HDV antigens (HDAgs), and we have characterized them both in vitro and in vivo. We confirmed that S-HDAg is essential for HDV replication and cannot be replaced by L-HDAg or host cellular proteins, and that L-HDAg is essential to produce the HDV infectious particle and inhibits its replication. We have also found that lack of L-HDAg resulted in the increase of S-HDAg expression levels and the exacerbation of liver damage, which was associated with an increment in liver inflammation but did not require T cells. Interestingly, early expression of L-HDAg significantly ameliorated the liver damage induced by the mutant expressing only S-HDAg. In summary, the use of AAV-HDV represents a very attractive platform to interrogate in vivo the role of viral components in the HDV life cycle and to better understand the mechanism of HDV-induced liver pathology. MDPI 2021-04-28 /pmc/articles/PMC8145145/ /pubmed/33925087 http://dx.doi.org/10.3390/v13050788 Text en © 2021 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
Maestro, Sheila
Gómez-Echarte, Nahia
Camps, Gracián
Usai, Carla
Suárez, Lester
Vales, África
Olagüe, Cristina
Aldabe, Rafael
González-Aseguinolaza, Gloria
AAV-HDV: An Attractive Platform for the In Vivo Study of HDV Biology and the Mechanism of Disease Pathogenesis (†)
title AAV-HDV: An Attractive Platform for the In Vivo Study of HDV Biology and the Mechanism of Disease Pathogenesis (†)
title_full AAV-HDV: An Attractive Platform for the In Vivo Study of HDV Biology and the Mechanism of Disease Pathogenesis (†)
title_fullStr AAV-HDV: An Attractive Platform for the In Vivo Study of HDV Biology and the Mechanism of Disease Pathogenesis (†)
title_full_unstemmed AAV-HDV: An Attractive Platform for the In Vivo Study of HDV Biology and the Mechanism of Disease Pathogenesis (†)
title_short AAV-HDV: An Attractive Platform for the In Vivo Study of HDV Biology and the Mechanism of Disease Pathogenesis (†)
title_sort aav-hdv: an attractive platform for the in vivo study of hdv biology and the mechanism of disease pathogenesis (†)
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8145145/
https://www.ncbi.nlm.nih.gov/pubmed/33925087
http://dx.doi.org/10.3390/v13050788
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