SREBP2-dependent lipid gene transcription enhances the infection of human dendritic cells by Zika virus

SREBP2依赖的脂质基因转录增强寨卡病毒对人类树突状细胞的感染

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作者:Emilie Branche, Ying-Ting Wang, Karla M Viramontes, Joan M Valls Cuevas, Jialei Xie, Fernanda Ana-Sosa-Batiz, Norazizah Shafee, Sascha H Duttke, Rachel E McMillan, Alex E Clark, Michael N Nguyen, Aaron F Garretson, Jan J Crames, Nathan J Spann, Zhe Zhu, Jeremy N Rich, Deborah H Spector, Christopher

Abstract

The emergence of Zika virus (ZIKV) as a global health threat has highlighted the unmet need for ZIKV-specific vaccines and antiviral treatments. ZIKV infects dendritic cells (DC), which have pivotal functions in activating innate and adaptive antiviral responses; however, the mechanisms by which DC function is subverted to establish ZIKV infection are unclear. Here we develop a genomics profiling method that enables discrete analysis of ZIKV-infected versus neighboring, uninfected primary human DCs to increase the sensitivity and specificity with which ZIKV-modulated pathways can be identified. The results show that ZIKV infection specifically increases the expression of genes enriched for lipid metabolism-related functions. ZIKV infection also increases the recruitment of sterol regulatory element-binding protein (SREBP) transcription factors to lipid gene promoters, while pharmacologic inhibition or genetic silencing of SREBP2 suppresses ZIKV infection of DCs. Our data thus identify SREBP2-activated transcription as a mechanism for promoting ZIKV infection amenable to therapeutic targeting.

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