Selective repurposing of the eukaryotic DNA replication machinery by a plant virus
Shi, C.; Medina-Puche, L.; Pott, D. M.; Wei, H.; Acatay, S.; Krenz, B.; Hanley-Bowdoin, L.; Lozano-Duran, R.
Show abstract
Eukaryotic DNA viruses that replicate in the nucleus often exploit components of the host DNA replication machinery for genome replication. Geminiviruses, causal agents of devastating crop diseases worldwide, strictly depend on host factors to replicate their circular single-stranded (ss) DNA genomes, with only a single virus-encoded protein, Rep, required for this process. Rep recruits host replication proteins to the viral genome and catalyzes nicking and ligation at the initiation and termination sites of rolling-circle replication. Despite the reliance of geminiviral replication on plant proteins, the composition of the viral replisome remains largely unknown. Here, we use TurboID-based proximity labeling to identify plant proteins in the vicinity of the Rep proteins from the geminiviruses tomato yellow leaf curl virus (TYLCV) and abutilon mosaic virus (AbMV) during infection. Combining virus-induced gene silencing, infection assays, and chromatin immunoprecipitation, we identify host DNA replication-related factors required for viral genome replication and likely components of the viral replisome. Our results indicate that geminiviruses and related eukaryotic ssDNA viruses selectively repurpose components of the eukaryotic replication fork to support rolling-circle replication, and suggest that they follow a leading-strand replication mode while utilizing the lagging-strand DNA polymerase {delta}. These findings shed light on the molecular mechanism of geminiviral DNA replication and identify potential targets for engineering antiviral resistance in crops.
Matching journals
The top 5 journals account for 50% of the predicted probability mass.
Similar papers in this journal
- A novel ilarvirus protein is expressed via stop codon readthrough and suppresses RDR6-dependent RNA silencing 98%
- Maf/ham1-like pyrophosphatases of non-canonical nucleotides are host-specific partners of viral RNA-dependent RNA polymerases 96%
- Mobilization of nuclear antiviral factors by Exportin XPO1 via the actin network inhibits RNA virus replication 96%
Similar papers in this journal
- A virus-encoded protein suppresses methylation of the viral genome in the Cajal body through its interaction with AGO4 98%
- Host casein kinase 1-mediated phosphorylation modulates phase separation of a rhabdovirus phosphoprotein and virus infection 96%
- Structural features stabilized by divalent cation coordination within hepatitis E virus ORF1 are critical for viral replication 95%
Similar papers in this journal
- Nuclear Speckles are Regulatory Hubs for Viral and Host mRNA Expression During HSV-1 Infection 94%
- Human FAM111A inhibits vaccinia virus replication by degrading viral DNA-binding protein I3 and is antagonized by poxvirus host range factor SPI-1 94%
- RNA genome expansion up to 64 kb in nidoviruses is host constrained and associated with new modes of replicase expression 93%
Similar papers in this journal
Similar papers in this journal
- Functionality of potato virus Y coat protein in cell-to-cell movement is defined by its N terminal region 96%
- A SUMO interacting motif in the Replication initiator protein of Tomato yellow leaf curl virus is required for viral replication 95%
- Bipartite viral RNA genome heterodimerization influences genome packaging and virion thermostability 95%
"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.