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Integrative systems biology characterizes immune-mediated neurodevelopmental changes in murine Zika virus microcephaly

Characterizing perturbation of molecular pathways in congenital Zika virus (ZIKV) infection is critical for improved therapeutic approaches. Leveraging integrative systems biology, proteomics, and RNA-seq, we analyzed embryonic brain tissues from an immunocompetent, wild-type congenital ZIKV infecti...

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Autores principales: Fujimura, Kimino, Guise, Amanda J., Nakayama, Tojo, Schlaffner, Christoph N., Meziani, Anais, Kumar, Mukesh, Cheng, Long, Vaughan, Dylan J., Kodani, Andrew, Van Haren, Simon, Parker, Kenneth, Levy, Ofer, Durbin, Ann F., Bosch, Irene, Gehrke, Lee, Steen, Hanno, Mochida, Ganeshwaran H., Steen, Judith A.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Elsevier 2023
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10275723/
https://www.ncbi.nlm.nih.gov/pubmed/37332674
http://dx.doi.org/10.1016/j.isci.2023.106909
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author Fujimura, Kimino
Guise, Amanda J.
Nakayama, Tojo
Schlaffner, Christoph N.
Meziani, Anais
Kumar, Mukesh
Cheng, Long
Vaughan, Dylan J.
Kodani, Andrew
Van Haren, Simon
Parker, Kenneth
Levy, Ofer
Durbin, Ann F.
Bosch, Irene
Gehrke, Lee
Steen, Hanno
Mochida, Ganeshwaran H.
Steen, Judith A.
author_facet Fujimura, Kimino
Guise, Amanda J.
Nakayama, Tojo
Schlaffner, Christoph N.
Meziani, Anais
Kumar, Mukesh
Cheng, Long
Vaughan, Dylan J.
Kodani, Andrew
Van Haren, Simon
Parker, Kenneth
Levy, Ofer
Durbin, Ann F.
Bosch, Irene
Gehrke, Lee
Steen, Hanno
Mochida, Ganeshwaran H.
Steen, Judith A.
author_sort Fujimura, Kimino
collection PubMed
description Characterizing perturbation of molecular pathways in congenital Zika virus (ZIKV) infection is critical for improved therapeutic approaches. Leveraging integrative systems biology, proteomics, and RNA-seq, we analyzed embryonic brain tissues from an immunocompetent, wild-type congenital ZIKV infection mouse model. ZIKV induced a robust immune response accompanied by the downregulation of critical neurodevelopmental gene programs. We identified a negative correlation between ZIKV polyprotein abundance and host cell cycle-inducing proteins. We further captured the downregulation of genes/proteins, many of which are known to be causative for human microcephaly, including Eomesodermin/T-box Brain Protein 2 (EOMES/TBR2) and Neuronal Differentiation 2 (NEUROD2). Disturbances of distinct molecular pathways in neural progenitors and post-mitotic neurons may contribute to complex brain phenotype of congenital ZIKV infection. Overall, this report on protein- and transcript-level dynamics enhances understanding of the ZIKV immunopathological landscape through characterization of fetal immune response in the developing brain.
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spelling pubmed-102757232023-06-18 Integrative systems biology characterizes immune-mediated neurodevelopmental changes in murine Zika virus microcephaly Fujimura, Kimino Guise, Amanda J. Nakayama, Tojo Schlaffner, Christoph N. Meziani, Anais Kumar, Mukesh Cheng, Long Vaughan, Dylan J. Kodani, Andrew Van Haren, Simon Parker, Kenneth Levy, Ofer Durbin, Ann F. Bosch, Irene Gehrke, Lee Steen, Hanno Mochida, Ganeshwaran H. Steen, Judith A. iScience Article Characterizing perturbation of molecular pathways in congenital Zika virus (ZIKV) infection is critical for improved therapeutic approaches. Leveraging integrative systems biology, proteomics, and RNA-seq, we analyzed embryonic brain tissues from an immunocompetent, wild-type congenital ZIKV infection mouse model. ZIKV induced a robust immune response accompanied by the downregulation of critical neurodevelopmental gene programs. We identified a negative correlation between ZIKV polyprotein abundance and host cell cycle-inducing proteins. We further captured the downregulation of genes/proteins, many of which are known to be causative for human microcephaly, including Eomesodermin/T-box Brain Protein 2 (EOMES/TBR2) and Neuronal Differentiation 2 (NEUROD2). Disturbances of distinct molecular pathways in neural progenitors and post-mitotic neurons may contribute to complex brain phenotype of congenital ZIKV infection. Overall, this report on protein- and transcript-level dynamics enhances understanding of the ZIKV immunopathological landscape through characterization of fetal immune response in the developing brain. Elsevier 2023-05-19 /pmc/articles/PMC10275723/ /pubmed/37332674 http://dx.doi.org/10.1016/j.isci.2023.106909 Text en © 2023. https://creativecommons.org/licenses/by-nc-nd/4.0/This is an open access article under the CC BY-NC-ND license (http://creativecommons.org/licenses/by-nc-nd/4.0/).
spellingShingle Article
Fujimura, Kimino
Guise, Amanda J.
Nakayama, Tojo
Schlaffner, Christoph N.
Meziani, Anais
Kumar, Mukesh
Cheng, Long
Vaughan, Dylan J.
Kodani, Andrew
Van Haren, Simon
Parker, Kenneth
Levy, Ofer
Durbin, Ann F.
Bosch, Irene
Gehrke, Lee
Steen, Hanno
Mochida, Ganeshwaran H.
Steen, Judith A.
Integrative systems biology characterizes immune-mediated neurodevelopmental changes in murine Zika virus microcephaly
title Integrative systems biology characterizes immune-mediated neurodevelopmental changes in murine Zika virus microcephaly
title_full Integrative systems biology characterizes immune-mediated neurodevelopmental changes in murine Zika virus microcephaly
title_fullStr Integrative systems biology characterizes immune-mediated neurodevelopmental changes in murine Zika virus microcephaly
title_full_unstemmed Integrative systems biology characterizes immune-mediated neurodevelopmental changes in murine Zika virus microcephaly
title_short Integrative systems biology characterizes immune-mediated neurodevelopmental changes in murine Zika virus microcephaly
title_sort integrative systems biology characterizes immune-mediated neurodevelopmental changes in murine zika virus microcephaly
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10275723/
https://www.ncbi.nlm.nih.gov/pubmed/37332674
http://dx.doi.org/10.1016/j.isci.2023.106909
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