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Transcriptional Response of Human Neurospheres to Helper-Dependent CAV-2 Vectors Involves the Modulation of DNA Damage Response, Microtubule and Centromere Gene Groups

Brain gene transfer using viral vectors will likely become a therapeutic option for several disorders. Helper-dependent (HD) canine adenovirus type 2 vectors (CAV-2) are well suited for this goal. These vectors are poorly immunogenic, efficiently transduce neurons, are retrogradely transported to af...

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Autores principales: Piersanti, Stefania, Burla, Romina, Licursi, Valerio, Brito, Catarina, La Torre, Mattia, Alves, Paula M., Simao, Daniel, Mottini, Carla, Salinas, Sara, Negri, Rodolfo, Tagliafico, Enrico, Kremer, Eric J., Saggio, Isabella
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Public Library of Science 2015
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4514711/
https://www.ncbi.nlm.nih.gov/pubmed/26207738
http://dx.doi.org/10.1371/journal.pone.0133607
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author Piersanti, Stefania
Burla, Romina
Licursi, Valerio
Brito, Catarina
La Torre, Mattia
Alves, Paula M.
Simao, Daniel
Mottini, Carla
Salinas, Sara
Negri, Rodolfo
Tagliafico, Enrico
Kremer, Eric J.
Saggio, Isabella
author_facet Piersanti, Stefania
Burla, Romina
Licursi, Valerio
Brito, Catarina
La Torre, Mattia
Alves, Paula M.
Simao, Daniel
Mottini, Carla
Salinas, Sara
Negri, Rodolfo
Tagliafico, Enrico
Kremer, Eric J.
Saggio, Isabella
author_sort Piersanti, Stefania
collection PubMed
description Brain gene transfer using viral vectors will likely become a therapeutic option for several disorders. Helper-dependent (HD) canine adenovirus type 2 vectors (CAV-2) are well suited for this goal. These vectors are poorly immunogenic, efficiently transduce neurons, are retrogradely transported to afferent structures in the brain and lead to long-term transgene expression. CAV-2 vectors are being exploited to unravel behavior, cognition, neural networks, axonal transport and therapy for orphan diseases. With the goal of better understanding and characterizing HD-CAV-2 for brain therapy, we analyzed the transcriptomic modulation induced by HD-CAV-2 in human differentiated neurospheres derived from midbrain progenitors. This 3D model system mimics several aspects of the dynamic nature of human brain. We found that differentiated neurospheres are readily transduced by HD-CAV-2 and that transduction generates two main transcriptional responses: a DNA damage response and alteration of centromeric and microtubule probes. Future investigations on the biochemistry of processes highlighted by probe modulations will help defining the implication of HD-CAV-2 and CAR receptor binding in enchaining these functional pathways. We suggest here that the modulation of DNA damage genes is related to viral DNA, while the alteration of centromeric and microtubule probes is possibly enchained by the interaction of the HD-CAV-2 fibre with CAR.
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spelling pubmed-45147112015-07-29 Transcriptional Response of Human Neurospheres to Helper-Dependent CAV-2 Vectors Involves the Modulation of DNA Damage Response, Microtubule and Centromere Gene Groups Piersanti, Stefania Burla, Romina Licursi, Valerio Brito, Catarina La Torre, Mattia Alves, Paula M. Simao, Daniel Mottini, Carla Salinas, Sara Negri, Rodolfo Tagliafico, Enrico Kremer, Eric J. Saggio, Isabella PLoS One Research Article Brain gene transfer using viral vectors will likely become a therapeutic option for several disorders. Helper-dependent (HD) canine adenovirus type 2 vectors (CAV-2) are well suited for this goal. These vectors are poorly immunogenic, efficiently transduce neurons, are retrogradely transported to afferent structures in the brain and lead to long-term transgene expression. CAV-2 vectors are being exploited to unravel behavior, cognition, neural networks, axonal transport and therapy for orphan diseases. With the goal of better understanding and characterizing HD-CAV-2 for brain therapy, we analyzed the transcriptomic modulation induced by HD-CAV-2 in human differentiated neurospheres derived from midbrain progenitors. This 3D model system mimics several aspects of the dynamic nature of human brain. We found that differentiated neurospheres are readily transduced by HD-CAV-2 and that transduction generates two main transcriptional responses: a DNA damage response and alteration of centromeric and microtubule probes. Future investigations on the biochemistry of processes highlighted by probe modulations will help defining the implication of HD-CAV-2 and CAR receptor binding in enchaining these functional pathways. We suggest here that the modulation of DNA damage genes is related to viral DNA, while the alteration of centromeric and microtubule probes is possibly enchained by the interaction of the HD-CAV-2 fibre with CAR. Public Library of Science 2015-07-24 /pmc/articles/PMC4514711/ /pubmed/26207738 http://dx.doi.org/10.1371/journal.pone.0133607 Text en © 2015 Piersanti 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, which permits unrestricted use, distribution, and reproduction in any medium, provided the original author and source are properly credited.
spellingShingle Research Article
Piersanti, Stefania
Burla, Romina
Licursi, Valerio
Brito, Catarina
La Torre, Mattia
Alves, Paula M.
Simao, Daniel
Mottini, Carla
Salinas, Sara
Negri, Rodolfo
Tagliafico, Enrico
Kremer, Eric J.
Saggio, Isabella
Transcriptional Response of Human Neurospheres to Helper-Dependent CAV-2 Vectors Involves the Modulation of DNA Damage Response, Microtubule and Centromere Gene Groups
title Transcriptional Response of Human Neurospheres to Helper-Dependent CAV-2 Vectors Involves the Modulation of DNA Damage Response, Microtubule and Centromere Gene Groups
title_full Transcriptional Response of Human Neurospheres to Helper-Dependent CAV-2 Vectors Involves the Modulation of DNA Damage Response, Microtubule and Centromere Gene Groups
title_fullStr Transcriptional Response of Human Neurospheres to Helper-Dependent CAV-2 Vectors Involves the Modulation of DNA Damage Response, Microtubule and Centromere Gene Groups
title_full_unstemmed Transcriptional Response of Human Neurospheres to Helper-Dependent CAV-2 Vectors Involves the Modulation of DNA Damage Response, Microtubule and Centromere Gene Groups
title_short Transcriptional Response of Human Neurospheres to Helper-Dependent CAV-2 Vectors Involves the Modulation of DNA Damage Response, Microtubule and Centromere Gene Groups
title_sort transcriptional response of human neurospheres to helper-dependent cav-2 vectors involves the modulation of dna damage response, microtubule and centromere gene groups
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4514711/
https://www.ncbi.nlm.nih.gov/pubmed/26207738
http://dx.doi.org/10.1371/journal.pone.0133607
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