Small Hydrophobic Viral Proteins Involved in Intercellular Movement of Diverse Plant Virus Genomes
Overview
Authors
Affiliations
Most plant viruses code for movement proteins (MPs) targeting plasmodesmata to enable cell-to-cell and systemic spread in infected plants. Small membrane-embedded MPs have been first identified in two viral transport gene modules, triple gene block (TGB) coding for an RNA-binding helicase TGB1 and two small hydrophobic proteins TGB2 and TGB3 and double gene block (DGB) encoding two small polypeptides representing an RNA-binding protein and a membrane protein. These findings indicated that movement gene modules composed of two or more cistrons may encode the nucleic acid-binding protein and at least one membrane-bound movement protein. The same rule was revealed for small DNA-containing plant viruses, namely, viruses belonging to genus (family ) and the family . In multi-component transport modules the nucleic acid-binding MP can be viral capsid protein(s), as in RNA-containing viruses of the families and . However, membrane proteins are always found among MPs of these multicomponent viral transport systems. Moreover, it was found that small membrane MPs encoded by many viruses can be involved in coupling viral replication and cell-to-cell movement. Currently, the studies of evolutionary origin and functioning of small membrane MPs is regarded as an important pre-requisite for understanding of the evolution of the existing plant virus transport systems. This paper represents the first comprehensive review which describes the whole diversity of small membrane MPs and presents the current views on their role in plant virus movement.
A Genetic Study of Spillovers in the Bean Common Mosaic Subgroup of Potyviruses.
Hajizadeh M, Ben Mansour K, Gibbs A Viruses. 2024; 16(9).
PMID: 39339828 PMC: 11436247. DOI: 10.3390/v16091351.
Abrahamian P, Grinstead S, Kinard G, Goenaga R, Rott P, Mollov D Arch Virol. 2024; 169(2):27.
PMID: 38214767 DOI: 10.1007/s00705-024-05966-z.
The mystery remains: How do potyviruses move within and between cells?.
Xue M, Arvy N, German-Retana S Mol Plant Pathol. 2023; 24(12):1560-1574.
PMID: 37571979 PMC: 10632792. DOI: 10.1111/mpp.13383.
Genomic analyses of a widespread blueberry virus in the United States.
Stainton D, Villamor D, Sierra Mejia A, Srivastava A, Mollov D, Martin R Virus Res. 2023; 333:199143.
PMID: 37271421 PMC: 10352716. DOI: 10.1016/j.virusres.2023.199143.
Uncovering Plant Virus Species Forming Novel Provisional Taxonomic Units Related to the Family .
Solovyev A, Morozov S Viruses. 2022; 14(12).
PMID: 36560684 PMC: 9781952. DOI: 10.3390/v14122680.