» Articles » PMID: 12706102

The Overlapping RNA-binding Domains of P33 and P92 Replicase Proteins Are Essential for Tombusvirus Replication

Overview
Journal Virology
Specialty Microbiology
Date 2003 Apr 23
PMID 12706102
Citations 40
Authors
Affiliations
Soon will be listed here.
Abstract

Two of the five viral-coded proteins of tombusviruses, which are small, nonsegmented, plus-stranded RNA viruses of plants, are required for replication in infected cells. These replicase proteins, namely, p33 and p92, of cucumber necrosis virus are expressed directly from the genomic RNA via a readthrough mechanism. Their overlapping domains contain an arginine/proline-rich RNA-binding motif (termed RPR, which has the sequence RPRRRP). Site-directed mutagenesis of p33 expressed in Escherichia coli, followed by a gel shift assay, defined two of the four arginines as required for efficient RNA binding in vitro. In vivo testing of 19 RPR motif mutants revealed that the RPR motif, and therefore the ability to bind RNA, is important for the replication of tombusviruses and their associated defective interfering (DI) RNAs. Mutation within the RPR motif also affected the ratio of subgenomic versus genomic RNAs in infected cells. To test whether the RPR motif is essential for the function of either p33 or p92 in replication, we used a two-component system developed by, J. Virol. 5845-5851), in which p92 was expressed from the genomic RNA of a tombusvirus, while p33 was expressed from a DI RNA. The protoplast experiments with the two-component system revealed that the RPR motif is essential for the replication function of both proteins. Interestingly, mutations within the RPR motif of p33 and p92 had different effects on RNA replication, suggesting different roles for the RNA-binding motifs of these proteins in tombusvirus replication.

Citing Articles

Exogenous and endogenous dsRNAs perceived by plant Dicer-like 4 protein in the RNAi-depleted cellular context.

Leonetti P, Consiglio A, Arendt D, Golbik R, Rubino L, Gursinsky T Cell Mol Biol Lett. 2023; 28(1):64.

PMID: 37550627 PMC: 10405411. DOI: 10.1186/s11658-023-00469-2.


Race against Time between the Virus and Host: Actin-Assisted Rapid Biogenesis of Replication Organelles is Used by TBSV to Limit the Recruitment of Cellular Restriction Factors.

Molho M, Zhu S, Nagy P J Virol. 2022; 96(12):e0016821.

PMID: 35638821 PMC: 9215244. DOI: 10.1128/jvi.00168-21.


A novel viral strategy for host factor recruitment: The co-opted proteasomal Rpn11 protein interaction hub in cooperation with subverted actin filaments are targeted to deliver cytosolic host factors for viral replication.

Molho M, Lin W, Nagy P PLoS Pathog. 2021; 17(6):e1009680.

PMID: 34161398 PMC: 8260003. DOI: 10.1371/journal.ppat.1009680.


Key interplay between the co-opted sorting nexin-BAR proteins and PI3P phosphoinositide in the formation of the tombusvirus replicase.

Feng Z, Kovalev N, Nagy P PLoS Pathog. 2020; 16(12):e1009120.

PMID: 33370420 PMC: 7833164. DOI: 10.1371/journal.ppat.1009120.


Interviral Recombination between Plant, Insect, and Fungal RNA Viruses: Role of the Intracellular Ca/Mn Pump.

Kovalev N, Pogany J, Nagy P J Virol. 2019; 94(1).

PMID: 31597780 PMC: 6912095. DOI: 10.1128/JVI.01015-19.