6533b870fe1ef96bd12cf193
RESEARCH PRODUCT
Molecular evolutionary analysis of type-1 human astroviruses identifies putative sites under selection pressure on the capsid protein
Noemi UroneVincenzo CappaFloriana BonuraVito MartellaSara Li MuliGianvito LanaveSimona De GraziaGiovanni M. GiammancoKrisztián BányaiÁKos GellértA. Pepesubject
Models Molecular0301 basic medicineMicrobiology (medical)Settore MED/07 - Microbiologia E Microbiologia ClinicaGenotypeProtein ConformationAstroviru030106 microbiologyBiologyMicrobiologyAstrovirusEvolution MolecularOpen Reading Frames03 medical and health sciencesProtein structureGeneticPhylogeneticsAstroviridae InfectionsGenetic variationGenotypePhylogenetic analyseGeneticsHumansAmino Acid SequenceSelection GeneticPeptide sequenceMolecular BiologyPhylogenyEcology Evolution Behavior and SystematicsGeneticsGenetic evolutionSelection pressure analysiGenetic Variationbiology.organism_classificationEcology Evolution Behavior and SystematicOpen reading frame030104 developmental biologyInfectious DiseasesCapsidAstroviridaeCapsid ProteinsCapsid protein structureHAstV-1description
Human astroviruses (HAstV) are important enteric pathogens that can be classified into eight sero/genotypes (HAstV-1 to -8). Although the various HAstV types show global spread, type-1 strains tend to be predominant. Molecular analysis of the genomic region encoding the capsid protein (ORF2) has revealed discrete sequence variation, with different lineages within each HAstV type and at least three major lineages have been identified within HAstV-1. Longitudinal epidemiological surveillance has revealed temporal shift of the various HAstV-1 lineages. Metadata analysis of HAstV-1 sequences available in the databases also revealed temporal shifts of the circulation of HAstV-1 lineages, suggesting possible antigenic-related mechanisms of selection at the sub-genotype level. By comparison of HAstV-1 capsid sequences, lineage-defining residues under positive selection were identified. Structural analysis of HAstV-1 capsid allowed identifying at least six residues exposed on the virion surface. Two residues were located in the VP34 (shell region) whilst four residues were mapped in the VP25/27 (protruding region) of HAstV capsid protein, in proximity of the putative receptor binding S site. These findings suggest that mechanisms similar to those observed and/or hypothesized for other enteric viruses are also shaping the evolution of HAstVs, with intra-typic diversification being a possible mechanism to decrease the antigenic pressure to which these viruses are exposed.
year | journal | country | edition | language |
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2017-10-25 |