Discordant congenital Zika syndrome twins show differential in vitro viral susceptibility of neural progenitor cells

患有寨卡病毒先天性综合征的双胞胎在体外表现出神经祖细胞对病毒的敏感性差异。

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作者:Luiz Carlos Caires-Júnior ,Ernesto Goulart ,Uirá Souto Melo ,Bruno Henrique Silva Araujo ,Lucas Alvizi ,Alessandra Soares-Schanoski ,Danyllo Felipe de Oliveira ,Gerson Shigeru Kobayashi ,Karina Griesi-Oliveira ,Camila Manso Musso ,Murilo Sena Amaral ,Lucas Ferreira daSilva ,Renato Mancini Astray ,Sandra Fernanda Suárez-Patiño ,Daniella Cristina Ventini ,Sérgio Gomes da Silva ,Guilherme Lopes Yamamoto ,Suzana Ezquina ,Michel Satya Naslavsky ,Kayque Alves Telles-Silva ,Karina Weinmann ,Vanessa van der Linden ,Helio van der Linden ,João Ricardo Mendes de Oliveira ,Nivia Maria Rodrigues Arrais ,Adriana Melo ,Thalita Figueiredo ,Silvana Santos ,Joanna Goes Castro Meira ,Saulo Duarte Passos ,Roque Pacheco de Almeida ,Ana Jovina Barreto Bispo ,Esper Abrão Cavalheiro ,Jorge Kalil ,Edécio Cunha-Neto ,Helder Nakaya ,Robert Andreata-Santos ,Luis Carlos de Souza Ferreira ,Sergio Verjovski-Almeida ,Paulo Lee Ho ,Maria Rita Passos-Bueno ,Mayana Zatz

Abstract

Congenital Zika syndrome (CZS) causes early brain development impairment by affecting neural progenitor cells (NPCs). Here, we analyze NPCs from three pairs of dizygotic twins discordant for CZS. We compare by RNA-Seq the NPCs derived from CZS-affected and CZS-unaffected twins. Prior to Zika virus (ZIKV) infection the NPCs from CZS babies show a significantly different gene expression signature of mTOR and Wnt pathway regulators, key to a neurodevelopmental program. Following ZIKV in vitro infection, cells from affected individuals have significantly higher ZIKV replication and reduced cell growth. Whole-exome analysis in 18 affected CZS babies as compared to 5 unaffected twins and 609 controls excludes a monogenic model to explain resistance or increased susceptibility to CZS development. Overall, our results indicate that CZS is not a stochastic event and depends on NPC intrinsic susceptibility, possibly related to oligogenic and/or epigenetic mechanisms.

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