ArticlePLoS pathogens2024
The astrovirus N-terminal nonstructural protein anchors replication complexes to the perinuclear ER membranes.
Article in PLoS pathogens, 2024. The graph could read no effect estimate from its abstract, so it casts no vote on the map. Cited by 8 papers.
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Who cites it
8 citing papers in PubMed.
- Viral protease-mediated polyprotein processing in human astroviruses.Npj viruses · 2026Article
- The dynamics and strategy of RNA replication in astroviruses.NAR molecular medicine · 2026Article
- Development of a Multiplex TaqMan Real-Time RT-PCR Assay for the Rapid Differential Detection of Classic, MLB-Clade and VA-Clade Human Astroviruses.Journal of microbiology and biotechnology · 2025Article
- Endoplasmic reticulum-anchored nonstructural proteins drive human astrovirus replication organelle formation.PLoS pathogens · 2025Article
- Comparison of classic and novel human astrovirus MLB and VA seroprevalence in HIV and non-HIV cohorts in South China demonstrates high seroreactivity to classic human astrovirus, which is associated with HIV infection.Microbiology spectrum · 2025Article
- Functional characterization of DPP4 and FcRn as receptor and coreceptor for classical human astroviruses in Caco-2 cells.PLoS pathogens · 2025Article
- Isolation and characterization of goose astrovirus genotype 1 causing enteritis in goslings from Sichuan Province, China.BMC veterinary research · 2025Article
- Development and Application of MLB Human Astrovirus Reverse Genetics Clones and Replicons.Bio-protocol · 2025Article
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Authors and funding
6 authors.
Funding
Abstract
An essential aspect of positive-sense RNA virus replication is anchoring the replication complex (RC) to cellular membranes. Positive-sense RNA viruses employ diverse strategies, including co-translational membrane targeting through signal peptides and co-opting cellular membrane trafficking components. Often, N-terminal nonstructural proteins play a crucial role in linking the RC to membranes, facilitating the early association of the replication machinery. Astroviruses utilize a polyprotein strategy to synthesize nonstructural proteins, relying on subsequent processing to form replication-competent complexes. This study provides evidence for the perinuclear ER membrane association of RCs in five distinct human astrovirus strains. Using tagged recombinant classical human astrovirus 1 and neurotropic MLB2 strains, we establish that the N-terminal domain guides the ER membrane association. We identified di-arginine motifs responsible for the perinuclear ER retention and formation of functional RCs through mutational analysis of the N-terminal domain in replicon and reverse genetics systems. In addition, we demonstrate the association of key components of the astrovirus replication complex: double-stranded RNA, RNA-dependent RNA polymerase, protease, and N-terminal protein. Our findings highlight the intricate virus-ER interaction mechanism employed by astroviruses, potentially leading to the development of novel antiviral intervention strategies.
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Registered trials
Read under generation 80e0d062 · epoch 390. Bibliography from PubMed, PubMed Central and OpenAlex; grants from NIH RePORTER; trial links from ClinicalTrials.gov; estimates, votes and beliefs from the OpenQuestion graph.