Cargando…

Zika virus NS3 protease induces bone morphogenetic protein-dependent brain calcification in human fetuses

The most frequent fetal birth defect associated with prenatal Zika virus (ZIKV) infection is brain calcification, which in turn may potentially affect neurological development in infants. Understanding the mechanism could inform the development of potential therapies against prenatal ZIKV brain calc...

Descripción completa

Detalles Bibliográficos
Autores principales: Chen, Weiqiang, Foo, Suan-Sin, Hong, Eunjin, Wu, Christine, Lee, Wai-Suet, Lee, Shin-Ae, Evseenko, Denis, Lopes Moreira, Maria Elisabeth, García-Sastre, Adolfo, Cheng, Genhong, Nielsen-Saines, Karin, Brasil, Patrícia, Avvad-Portari, Elyzabeth, Jung, Jae U.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: 2021
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8012254/
https://www.ncbi.nlm.nih.gov/pubmed/33510473
http://dx.doi.org/10.1038/s41564-020-00850-3
_version_ 1783673337419923456
author Chen, Weiqiang
Foo, Suan-Sin
Hong, Eunjin
Wu, Christine
Lee, Wai-Suet
Lee, Shin-Ae
Evseenko, Denis
Lopes Moreira, Maria Elisabeth
García-Sastre, Adolfo
Cheng, Genhong
Nielsen-Saines, Karin
Brasil, Patrícia
Avvad-Portari, Elyzabeth
Jung, Jae U.
author_facet Chen, Weiqiang
Foo, Suan-Sin
Hong, Eunjin
Wu, Christine
Lee, Wai-Suet
Lee, Shin-Ae
Evseenko, Denis
Lopes Moreira, Maria Elisabeth
García-Sastre, Adolfo
Cheng, Genhong
Nielsen-Saines, Karin
Brasil, Patrícia
Avvad-Portari, Elyzabeth
Jung, Jae U.
author_sort Chen, Weiqiang
collection PubMed
description The most frequent fetal birth defect associated with prenatal Zika virus (ZIKV) infection is brain calcification, which in turn may potentially affect neurological development in infants. Understanding the mechanism could inform the development of potential therapies against prenatal ZIKV brain calcification. In perivascular cells, bone morphogenetic protein (BMP) is an osteogenic factor that undergoes maturation to activate osteogenesis and calcification. We show that ZIKV infection of cultivated primary human brain pericytes triggers BMP2 maturation, leading to osteogenic gene expression and calcification. We observed extensive calcification near ZIKV(+) pericytes of fetal human brain specimens and in vertically transmitted ZIKV(+) human STAT2-knock-in mouse pup brains. ZIKV infection of primary pericytes stimulated BMP2 maturation, inducing osteogenic gene expression and calcification that were completely blocked by anti-BMP2/4 neutralizing antibody. Not only did ZIKV NS3 expression alone induce BMP2 maturation, osteogenic gene expression and calcification, but purified NS3 protease also effectively cleaved pro-BMP2 in vitro to generate biologically active mature BMP2. These findings highlight ZIKV-induced calcification where the NS3 protease subverts the BMP2-mediated osteogenic signaling pathway to trigger brain calcification.
format Online
Article
Text
id pubmed-8012254
institution National Center for Biotechnology Information
language English
publishDate 2021
record_format MEDLINE/PubMed
spelling pubmed-80122542021-07-28 Zika virus NS3 protease induces bone morphogenetic protein-dependent brain calcification in human fetuses Chen, Weiqiang Foo, Suan-Sin Hong, Eunjin Wu, Christine Lee, Wai-Suet Lee, Shin-Ae Evseenko, Denis Lopes Moreira, Maria Elisabeth García-Sastre, Adolfo Cheng, Genhong Nielsen-Saines, Karin Brasil, Patrícia Avvad-Portari, Elyzabeth Jung, Jae U. Nat Microbiol Article The most frequent fetal birth defect associated with prenatal Zika virus (ZIKV) infection is brain calcification, which in turn may potentially affect neurological development in infants. Understanding the mechanism could inform the development of potential therapies against prenatal ZIKV brain calcification. In perivascular cells, bone morphogenetic protein (BMP) is an osteogenic factor that undergoes maturation to activate osteogenesis and calcification. We show that ZIKV infection of cultivated primary human brain pericytes triggers BMP2 maturation, leading to osteogenic gene expression and calcification. We observed extensive calcification near ZIKV(+) pericytes of fetal human brain specimens and in vertically transmitted ZIKV(+) human STAT2-knock-in mouse pup brains. ZIKV infection of primary pericytes stimulated BMP2 maturation, inducing osteogenic gene expression and calcification that were completely blocked by anti-BMP2/4 neutralizing antibody. Not only did ZIKV NS3 expression alone induce BMP2 maturation, osteogenic gene expression and calcification, but purified NS3 protease also effectively cleaved pro-BMP2 in vitro to generate biologically active mature BMP2. These findings highlight ZIKV-induced calcification where the NS3 protease subverts the BMP2-mediated osteogenic signaling pathway to trigger brain calcification. 2021-01-28 2021-04 /pmc/articles/PMC8012254/ /pubmed/33510473 http://dx.doi.org/10.1038/s41564-020-00850-3 Text en Users may view, print, copy, and download text and data-mine the content in such documents, for the purposes of academic research, subject always to the full Conditions of use:http://www.nature.com/authors/editorial_policies/license.html#terms
spellingShingle Article
Chen, Weiqiang
Foo, Suan-Sin
Hong, Eunjin
Wu, Christine
Lee, Wai-Suet
Lee, Shin-Ae
Evseenko, Denis
Lopes Moreira, Maria Elisabeth
García-Sastre, Adolfo
Cheng, Genhong
Nielsen-Saines, Karin
Brasil, Patrícia
Avvad-Portari, Elyzabeth
Jung, Jae U.
Zika virus NS3 protease induces bone morphogenetic protein-dependent brain calcification in human fetuses
title Zika virus NS3 protease induces bone morphogenetic protein-dependent brain calcification in human fetuses
title_full Zika virus NS3 protease induces bone morphogenetic protein-dependent brain calcification in human fetuses
title_fullStr Zika virus NS3 protease induces bone morphogenetic protein-dependent brain calcification in human fetuses
title_full_unstemmed Zika virus NS3 protease induces bone morphogenetic protein-dependent brain calcification in human fetuses
title_short Zika virus NS3 protease induces bone morphogenetic protein-dependent brain calcification in human fetuses
title_sort zika virus ns3 protease induces bone morphogenetic protein-dependent brain calcification in human fetuses
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8012254/
https://www.ncbi.nlm.nih.gov/pubmed/33510473
http://dx.doi.org/10.1038/s41564-020-00850-3
work_keys_str_mv AT chenweiqiang zikavirusns3proteaseinducesbonemorphogeneticproteindependentbraincalcificationinhumanfetuses
AT foosuansin zikavirusns3proteaseinducesbonemorphogeneticproteindependentbraincalcificationinhumanfetuses
AT hongeunjin zikavirusns3proteaseinducesbonemorphogeneticproteindependentbraincalcificationinhumanfetuses
AT wuchristine zikavirusns3proteaseinducesbonemorphogeneticproteindependentbraincalcificationinhumanfetuses
AT leewaisuet zikavirusns3proteaseinducesbonemorphogeneticproteindependentbraincalcificationinhumanfetuses
AT leeshinae zikavirusns3proteaseinducesbonemorphogeneticproteindependentbraincalcificationinhumanfetuses
AT evseenkodenis zikavirusns3proteaseinducesbonemorphogeneticproteindependentbraincalcificationinhumanfetuses
AT lopesmoreiramariaelisabeth zikavirusns3proteaseinducesbonemorphogeneticproteindependentbraincalcificationinhumanfetuses
AT garciasastreadolfo zikavirusns3proteaseinducesbonemorphogeneticproteindependentbraincalcificationinhumanfetuses
AT chenggenhong zikavirusns3proteaseinducesbonemorphogeneticproteindependentbraincalcificationinhumanfetuses
AT nielsensaineskarin zikavirusns3proteaseinducesbonemorphogeneticproteindependentbraincalcificationinhumanfetuses
AT brasilpatricia zikavirusns3proteaseinducesbonemorphogeneticproteindependentbraincalcificationinhumanfetuses
AT avvadportarielyzabeth zikavirusns3proteaseinducesbonemorphogeneticproteindependentbraincalcificationinhumanfetuses
AT jungjaeu zikavirusns3proteaseinducesbonemorphogeneticproteindependentbraincalcificationinhumanfetuses