Author:
Ngo Ashley M,Shurtleff Matthew J,Popova Katerina D,Kulsuptrakul Jessie,Weissman Jonathan S,Puschnik Andreas S
Abstract
AbstractFlaviviruses translate their genomes as multi-pass transmembrane proteins at the endoplasmic reticulum (ER) membrane. Here, we show that the ER membrane protein complex (EMC) is indispensable for the expression of viral polyproteins. We demonstrated that EMC was essential for accurate folding and post-translational stability rather than translation efficiency. Specifically, we revealed degradation of NS4A-NS4B, a region rich in transmembrane domains, in absence of EMC. Orthogonally, by serial passaging of virus on EMC-deficient cells, we identified two non-synonymous point mutations in NS4A and NS4B, which rescued viral replication. Finally, we showed a physical interaction between EMC and viral NS4B and that the NS4A-4B region adopts an aberrant topology in the absence of the EMC leading to degradation. Together, our data highlight how flaviviruses hijack the EMC for transmembrane protein biogenesis to achieve optimal expression of their polyproteins, which reinforces a role for the EMC in stabilizing challenging transmembrane proteins during synthesis.
Publisher
Cold Spring Harbor Laboratory
Reference39 articles.
1. Differential and convergent utilization of autophagy components by positive-strand RNA viruses;PLoS Biol,2019
2. Ribavirin: a drug active against many viruses with multiple effects on virus replication and propagation. Molecular basis of ribavirin resistance
3. Easy quantitative assessment of genome editing by sequence trace decomposition
4. Buentzel, J. , and Thoms, S . (2017). The Use of Glycosylation Tags as Reporters for Protein Entry into the Endoplasmic Reticulum in Yeast and Mammalian Cells. In Peroxisomes: Methods and Protocols, M. Schrader , ed. (New York, NY: Springer New York), pp. 221–232.
5. Cleavage of the Dengue Virus Polyprotein at the NS3/NS4A and NS4B/NS5 Junctions Is Mediated by Viral Protease NS2B-NS3, Whereas NS4A/NS4B May Be Processed by a Cellular Protease;J VIROL,1992