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1.
Arch Virol ; 157(9): 1729-39, 2012 Sep.
Article in English | MEDLINE | ID: mdl-22684534

ABSTRACT

The HPV16 E1(∧)E4 protein is thought to contribute to the release of newly formed viral particles from infected epithelia. In order to investigate amino acid mutations in the HPV16 E1(∧)E4 protein, the complete E4 ORF was amplified by PCR in 27 HPV16-positive cervical samples, and the amplicons were cloned. Fifteen nucleic acid variations were identified in the E4 ORF, including seven silent nucleic acid mutations. In addition, nine amino acid mutations (A7V, A7P, L16I, D45E, L59I, L59T, Q66P, S72F, H75Q) were detected in the E1(∧)E4 protein, and these were associated with the severity of cervical malignancy. A maximum-likelihood phylogenetic tree was constructed based on the E4 ORF, and nucleotide sequence analysis of the E4, E6 and E7 genes from the same samples was conducted in order to determine the phylogenetic origin of the cloned sequences from the amplified HPV16 E4. Based on the nucleotide sequence and phylogenetic analysis it was revealed that even though E4 ORF constitutes a small polymorphic portion of the viral genome (288 bp), it could provide valuable information about the origins of the HPV16 genome. In addition, molecular evolutionary analysis of the E4 coding region revealed that neutral selection is dominant in the overlapping region of the E4 and E2 ORFs.


Subject(s)
Human papillomavirus 16/classification , Human papillomavirus 16/genetics , Oncogene Proteins, Viral/genetics , Papillomavirus Infections/epidemiology , Papillomavirus Infections/virology , Amino Acid Substitution , Cluster Analysis , DNA, Viral/chemistry , DNA, Viral/genetics , Female , Genotype , Greece/epidemiology , Human papillomavirus 16/isolation & purification , Humans , Molecular Epidemiology , Molecular Sequence Data , Mutation, Missense , Phylogeny , Sequence Analysis, DNA
2.
Arch Virol ; 157(5): 825-32, 2012 May.
Article in English | MEDLINE | ID: mdl-22294445

ABSTRACT

The E2 gene of human papilloma virus is expressed at the early stage of the viral life cycle, encoding the E2 transcription factor, and regulates the expression of E6 and E7 oncogenes. Disruption of E2 gene due to viral integration inhibits the transcriptional suppression of the HPV oncogenes, inducing cell proliferation. In the present study, a total of 22 HPV16-positive cytological specimens derived from high- and low-grade cervical intraepithelial lesions were investigated in order to identify sequence variations in the HPV16 E2 ORF. The E2 gene was amplified by PCR using external and internal overlapping sets of primers. Amplicons were cloned and sequenced. Disruption sites were detected in cervical samples diagnosed as high-grade cervical intraepithelial lesions. Moreover, sequence variations were identified in the E2 ORF and specific variations were associated with non-European variants such as African type I, African type II and Asian American. A total of three new sequence variations were identified at positions 2791, 2823 (transactivation domain) and 3361 (hinge region). Distinct phylogenetic branches were formed according to E2 analysis that characterized the different HPV16 variants. It was ascertained that non-European variants are circulating in the Greek population.


Subject(s)
DNA-Binding Proteins/genetics , Genetic Variation , Human papillomavirus 16/genetics , Oncogene Proteins, Viral/genetics , Papillomavirus Infections/virology , Uterine Cervical Dysplasia/virology , Base Sequence , DNA-Binding Proteins/chemistry , Female , Greece , Human papillomavirus 16/chemistry , Human papillomavirus 16/classification , Human papillomavirus 16/isolation & purification , Humans , Molecular Sequence Data , Oncogene Proteins, Viral/chemistry , Phylogeny , Protein Structure, Tertiary
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