Homotypic endoplasmic reticulum membrane tethering is critical for flavivirus replication
Owen, J. E.; Bemis, C. L.; Wang, Q.; Varadan, A. C.; Vander Velden, J. W.; Andacic, L.; Uyar, O.; Gupta, M.; Scharer, C. D.; Chatel-Chaix, L.; Scaturro, P.; Suthar, M. S.; Neufeldt, C.
Show abstract
Flaviviruses (genus Orthoflavivirus) are arthropod-borne viruses which cause approximately 400 million annual global infections in humans. Flavivirus infection requires cellular machinery to facilitate replication and spread. All known flaviviruses replicate in association with the host endoplasmic reticulum (ER), where genome replication is confined within virus-induced ER invaginations called viral replication organelles (vROs). Despite the central role of these structures during flavivirus infection, the mechanisms underlying vRO biogenesis remain undefined - particularly the membrane rearrangements required for their formation. In this work, we report a conserved role for a cellular ER remodeling protein, atlastin-2 (ATL2), in the organization of vROs within infected cells. Using confocal and electron microscopy, we show that ATL2 depletion leads to a reduction in vRO spatial distribution in flavivirus-infected cells. Changes in vRO distribution corresponded with a decrease in virus production and robust induction of innate immune responses. We also demonstrate that ATL2 accumulates in areas of vRO formation during flavivirus infection. Critically, mutational analysis showed that a tethering-competent but fusion-defective ATL2 mutant was sufficient to rescue DENV and ZIKV replication in ATL2-knockout cells. Finally, inhibition of ATL2 activity using synthetic peptides significantly reduced DENV replication in both immortalized and human primary cells, suggesting a possible avenue for targeting host ER functions to limit flavivirus replication. Taken together, these results show that membrane tethering plays a critical and conserved role in flavivirus infection, functioning to organize membranes for vRO biogenesis and limit cellular immune activation. Importantly, we provide evidence that ATL2-mediated membrane organization can be targeted to inhibit viral replication.
Matching journals
The top 4 journals account for 50% of the predicted probability mass.
Similar papers in this journal
- Spatial and functional arrangement of Ebola virus polymerase inside phase-separated viral factories 98%
- A global lipid map defines a network essential for Zika virus replication 97%
- Intrinsic p53 Activation Restricts Gammaherpesvirus-Driven Germinal Center B Cell Expansion during Latency Establishment 97%
Similar papers in this journal
- Single B cell transcriptomics identifies multiple isotypes of broadly neutralizing antibodies against flaviviruses 97%
- Cell-free assays reveal that the HIV-1 capsid protects reverse transcripts from cGAS 96%
- Epstein-Barr virus reactivation induces divergent abortive, reprogrammed, and host shutoff states by lytic progression 96%
Similar papers in this journal
- Dual signaling via interferon and DNA damage response elicits entrapment by giant PML nuclear bodies 96%
- Antigenic mapping and functional characterization of human New World hantavirus neutralizing antibodies 96%
- Principles of RNA recruitment to viral ribonucleoprotein condensates in a segmented dsRNA virus 96%
Similar papers in this journal
- Superinfection with intact HIV-1 results in conditional replication of defective proviruses and nonsuppressible viremia in people living with HIV-1 97%
- FOXO1 promotes HIV Latency by suppressing ER stress in T cells 97%
- Viral evolution prediction identifies broadly neutralizing antibodies against existing and prospective SARS-CoV-2 variants 97%
Similar papers in this journal
- Delta spike P681R mutation enhances SARS-CoV-2 fitness over Alpha variant 96%
- Human brain cell types shape host-rabies virus transcriptional interactions revealing a preexisting pro-viral astrocyte subpopulation 96%
- The Hypoxia-regulated Ectonucleotidase CD73 is a Host Determinant of HIV Latency 96%
"Similar papers" are the closest papers from that journal in the model's embedding space. They show what the match is built on, but the ranking comes mostly from a classifier over the whole training set, not from these examples alone.