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2.
J Virol ; 90(11): 5503-5513, 2016 06 01.
Article in English | MEDLINE | ID: mdl-27030261

ABSTRACT

UNLABELLED: Human papillomavirus 11 (HPV11) is an etiological agent of anogenital warts and laryngeal papillomas and is included in the 4-valent and 9-valent prophylactic HPV vaccines. We established the largest collection of globally circulating HPV11 isolates to date and examined the genomic diversity of 433 isolates and 78 complete genomes (CGs) from six continents. The genomic variation within the 2,800-bp E5a-E5b-L1-upstream regulatory region was initially studied in 181/207 (87.4%) HPV11 isolates collected for this study. Of these, the CGs of 30 HPV11 variants containing unique single nucleotide polymorphisms (SNPs), indels (insertions or deletions), or amino acid changes were fully sequenced. A maximum likelihood tree based on the global alignment of 78 HPV11 CGs (30 CGs from our study and 48 CGs from GenBank) revealed two HPV11 lineages (lineages A and B) and four sublineages (sublineages A1, A2, A3, and A4). HPV11 (sub)lineage-specific SNPs within the CG were identified, as well as the 208-bp representative region for CG-based phylogenetic clustering within the partial E2 open reading frame and noncoding region 2. Globally, sublineage A2 was the most prevalent, followed by sublineages A1, A3, and A4 and lineage B. IMPORTANCE: This collaborative international study defined the global heterogeneity of HPV11 and established the largest collection of globally circulating HPV11 genomic variants to date. Thirty novel complete HPV11 genomes were determined and submitted to the available sequence repositories. Global phylogenetic analysis revealed two HPV11 variant lineages and four sublineages. The HPV11 (sub)lineage-specific SNPs and the representative region identified within the partial genomic region E2/noncoding region 2 (NCR2) will enable the simpler identification and comparison of HPV11 variants worldwide. This study provides an important knowledge base for HPV11 for future studies in HPV epidemiology, evolution, pathogenicity, prevention, and molecular assay development.


Subject(s)
Genetic Variation , Genome, Viral , Human papillomavirus 11/genetics , Papillomavirus Infections/virology , Evolution, Molecular , Genomics , Genotype , High-Throughput Nucleotide Sequencing , Human papillomavirus 11/classification , Human papillomavirus 11/isolation & purification , Humans , Likelihood Functions , Open Reading Frames , Phylogeny , Polymorphism, Single Nucleotide , Sequence Alignment
3.
J Virol ; 88(13): 7307-16, 2014 Jul.
Article in English | MEDLINE | ID: mdl-24741079

ABSTRACT

UNLABELLED: Human papillomavirus type 6 (HPV6) is the major etiological agent of anogenital warts and laryngeal papillomas and has been included in both the quadrivalent and nonavalent prophylactic HPV vaccines. This study investigated the global genomic diversity of HPV6, using 724 isolates and 190 complete genomes from six continents, and the association of HPV6 genomic variants with geographical location, anatomical site of infection/disease, and gender. Initially, a 2,800-bp E5a-E5b-L1-LCR fragment was sequenced from 492/530 (92.8%) HPV6-positive samples collected for this study. Among them, 130 exhibited at least one single nucleotide polymorphism (SNP), indel, or amino acid change in the E5a-E5b-L1-LCR fragment and were sequenced in full. A global alignment and maximum likelihood tree of 190 complete HPV6 genomes (130 fully sequenced in this study and 60 obtained from sequence repositories) revealed two variant lineages, A and B, and five B sublineages: B1, B2, B3, B4, and B5. HPV6 (sub)lineage-specific SNPs and a 960-bp representative region for whole-genome-based phylogenetic clustering within the L2 open reading frame were identified. Multivariate logistic regression analysis revealed that lineage B predominated globally. Sublineage B3 was more common in Africa and North and South America, and lineage A was more common in Asia. Sublineages B1 and B3 were associated with anogenital infections, indicating a potential lesion-specific predilection of some HPV6 sublineages. Females had higher odds for infection with sublineage B3 than males. In conclusion, a global HPV6 phylogenetic analysis revealed the existence of two variant lineages and five sublineages, showing some degree of ethnogeographic, gender, and/or disease predilection in their distribution. IMPORTANCE: This study established the largest database of globally circulating HPV6 genomic variants and contributed a total of 130 new, complete HPV6 genome sequences to available sequence repositories. Two HPV6 variant lineages and five sublineages were identified and showed some degree of association with geographical location, anatomical site of infection/disease, and/or gender. We additionally identified several HPV6 lineage- and sublineage-specific SNPs to facilitate the identification of HPV6 variants and determined a representative region within the L2 gene that is suitable for HPV6 whole-genome-based phylogenetic analysis. This study complements and significantly expands the current knowledge of HPV6 genetic diversity and forms a comprehensive basis for future epidemiological, evolutionary, functional, pathogenicity, vaccination, and molecular assay development studies.


Subject(s)
Anus Neoplasms/genetics , Genetic Variation/genetics , Genome, Viral/genetics , Head and Neck Neoplasms/genetics , Human papillomavirus 6/genetics , Human papillomavirus 6/isolation & purification , Papillomavirus Infections/genetics , Uterine Cervical Neoplasms/genetics , Anus Neoplasms/complications , Anus Neoplasms/virology , Biological Evolution , Cell Lineage , Female , Genomics/methods , Genotype , Head and Neck Neoplasms/complications , Head and Neck Neoplasms/virology , Humans , Male , Papillomavirus Infections/complications , Papillomavirus Infections/virology , Phylogeny , Uterine Cervical Neoplasms/complications , Uterine Cervical Neoplasms/virology
4.
J Virol Methods ; 189(2): 271-6, 2013 May.
Article in English | MEDLINE | ID: mdl-23473839

ABSTRACT

Recurrent respiratory papillomatosis (RRP) is a potentially life-threatening disease caused by human papillomavirus (HPV), usually HPV types 6 and 11. The conventional method used for detection and typing the RRP isolates in our laboratory is the polymerase chain reaction (PCR) and DNA sequencing method. A real-time PCR assay based on fluorescence resonance energy transfer (FRET) probe technology was developed for the detection and rapid genotyping of HPV-6 and-11 isolates from biopsy material. The primers and probes were designed using multiple alignments of HPV-6 and HPV-11 partial E6 and E7 sequences that included prototypic and non-prototypic variants. Real-time PCR followed by probe-specific melting-curve analysis allowed differentiation of HPV-6 and HPV-11. HPV-6 and HPV-11 amplicons were used to determine detection limits and inter- and intra-assay variability. The detection limit of the assay was 12.8 DNA copies for HPV-6 and 22.5 DNA copies for HPV-11. A total of 60 isolates were genotyped using the FRET real-time PCR assay and a 100% concordance was obtained when results were compared with genotyping based on conventional DNA sequencing. The real-time PCR assay based on FRET technology was able to detect and rapidly genotype HPV from tissue biopsy obtained from patients with RRP. The assay reduces the time required for genotyping from three working days to less than a day.


Subject(s)
Human papillomavirus 11/isolation & purification , Human papillomavirus 6/isolation & purification , Molecular Diagnostic Techniques/methods , Papillomavirus Infections/diagnosis , Real-Time Polymerase Chain Reaction/methods , Respiratory Tract Infections/diagnosis , DNA Primers/genetics , Female , Fluorescence Resonance Energy Transfer/methods , Genotype , Human papillomavirus 11/classification , Human papillomavirus 11/genetics , Human papillomavirus 6/classification , Human papillomavirus 6/genetics , Humans , Male , Oligonucleotide Probes/genetics , Papillomavirus Infections/virology , Reproducibility of Results , Respiratory Tract Infections/virology , Sensitivity and Specificity , Transition Temperature
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