4.8 Article

Ultra-deep pyrosequencing analysis of the hepatitis B virus preCore region and main catalytic motif of the viral polymerase in the same viral genome

Journal

NUCLEIC ACIDS RESEARCH
Volume 39, Issue 19, Pages 8457-8471

Publisher

OXFORD UNIV PRESS
DOI: 10.1093/nar/gkr451

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Funding

  1. Spanish Ministry of Health and Consumer Affairs [FIS PS09/00899]
  2. Instituto Carlos III, Ministry of Health and Consumer Affairs

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Hepatitis B virus (HBV) pregenomic RNA contains a hairpin structure (epsilon) located in the preCore region, essential for viral replication. epsilon stability is enhanced by the presence of preCore variants and epsilon is recognized by the HBV polymerase (Pol). Mutations in the retrotranscriptase domain (YMDD) of Pol are associated with treatment resistance. The aim of this study was to analyze the preCore region and YMDD motif by ultra-deep pyrosequencing (UDPS). To evaluate the UDPS error rate, an internal control sequence was inserted in the amplicon. A newly developed technique enabled simultaneous analysis of the preCore region and Pol in the same viral genome, as well as the conserved sequence of the internal control. Nucleotide errors in HindIII yielded a UDPS error rate < 0.05%. UDPS study confirmed the possibility of simultaneous detection of preCore and YMDD mutations, and demonstrated the complexity of the HBV quasispecies and cooperation between viruses. Thermodynamic stability of the epsilon signal was found to be the main constraint for selecting main preCore mutations. Analysis of epsilon-signal variability suggested the essential nature of the epsilon structural motif and that certain nucleotides may be involved in epsilon signal functions.

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