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A Host-Harbored Metabolic Susceptibility of Coronavirus Enables Broad-Spectrum Targeting

Authors :
Huan Fang
Yonglun Wang
Lu Liu
Kunlun Cheng
Pei Li
Ya Tan
Xingjie Hao
Miao Mei
Xinxuan Xu
Yuanhang Yao
Fuwen Zan
Linzhi Wu
Yuangang Zhu
Bolin Xu
Dong Huang
Chaolong Wang
Xu Tan
Zhaohui Qian
Xiao-Wei Chen
Publication Year :
2022
Publisher :
Cold Spring Harbor Laboratory, 2022.

Abstract

Host-based antivirals could offer broad-spectrum therapeutics and prophylactics against the constantly-mutating viruses including the currently-ravaging coronavirus, yet must target cellular vulnerabilities of viruses without grossly endangering the host. Here we show that the master lipid regulator SREBP1 couples the phospholipid scramblase TMEM41B to constitute a host “metabolism-to-manufacture” cascade that maximizes membrane supplies to support coronaviral genome replication, harboring biosynthetic enzymes including Lipin1 as druggable viral-specific-essential (VSE) host genes. Moreover, pharmacological inhibition of Lipin1, by a moonlight function of the widely-prescribed beta-blocker Propranolol, metabolically uncouples the SREBP1-TMEM41B cascade and consequently exhibits broad-spectrum antiviral effects against coronaviruses, Zika virus, and Dengue virus. The data implicate a metabolism-based antiviral strategy that is well tolerated by the host, and a potential broad-spectrum medication against current and future coronavirus diseases.

Details

Database :
OpenAIRE
Accession number :
edsair.doi...........f86b940cd0b19122ca4f1c540662f4c4