HBV Mutation Detail Information

Virus Mutation HBV Mutation M204V


Basic Characteristics of Mutations
Mutation Site M204V
Mutation Site Sentence Three major patterns of mutations in HBV polymerase gene, namely single (rtM204V), double (rtL180M+rtM204V) and triple (rtV173L+rtL180M+rtM204V) mutations, are associated with 3TC-resistance; additionally, the triple mutation has vaccine-escape potential due to a corresponding change in overlapping surface gene.
Mutation Level Amino acid level
Mutation Type Nonsynonymous substitution
Gene/Protein/Region RT
Standardized Encoding Gene P  
Genotype/Subtype D;A
Viral Reference DQ315783
Functional Impact and Mechanisms
Disease HBV-HIV Coinfection    
Immune -
Target Gene -
Clinical and Epidemiological Correlations
Clinical Information Y
Treatment Lamivudine(LAM)
Location India
Literature Information
PMID 25654813
Title High incidence of lamivudine-resistance-associated vaccine-escape HBV mutants among HIV-coinfected patients on prolonged antiretroviral therapy
Author Pal A,Sarkar N,Saha D,Guha SK,Saha B,Chakrabarti S,Chakravarty R
Journal Antiviral therapy
Journal Info 2015;20(5):545-54
Abstract BACKGROUND: Worldwide, frequent emergence of lamivudine (3TC)-resistant HBV mutants has been reported in HIV-HBV-coinfected patients during long-term antiretroviral therapy (ART) that contains 3TC as the sole anti-HBV drug. Three major patterns of mutations in HBV polymerase gene, namely single (rtM204V), double (rtL180M+rtM204V) and triple (rtV173L+rtL180M+rtM204V) mutations, are associated with 3TC-resistance; additionally, the triple mutation has vaccine-escape potential due to a corresponding change in overlapping surface gene. Data from India, a major reservoir for HIV and HBV infection, is lacking. Here we investigated the effect of long-term 3TC treatment on virological response for HBV and characterized the 3TC-resistant HBV mutations in a cohort of HIV-HBV-coinfected patients from eastern India. METHODS: A cross-sectional study was performed in HIV-infected patients (n=563) receiving 3TC-containing ART for >/=6 months from the major ART centre of eastern India during 2011-2012. The hepatitis B surface antigen-positive HIV-infected patients (n=62) were categorized into four groups with comparable sample size according to the 3TC exposure for >/=6-<12 months (group I; n=15), >/=12-<24 months (group II; n=20), >/=24-<48 months (group III; n=13) and >/=48 months (group IV; n=14). Patients' plasma samples were examined for hepatitis B e antigen (HBeAg), HBV DNA, viral load and covalently closed circular DNA (cccDNA). HBV reverse transcriptase region was sequenced. RESULTS: With a longer period of 3TC exposure, the frequency of HIV-HBV-coinfected patients having HBV DNA suppression decreased. The prevalence of HBeAg-positivity, serum HBV DNA load >2,000 IU/ml and 3TC-resistant mutations simultaneously increased. Remarkably, the 3TC-resistant triple mutation predominated over the double mutation in this cohort (32.26% versus 19.34%) and prevailed in significantly higher frequency among HBV viraemic patients experiencing 3TC for >/=48 months (60% versus 10%; P=0.03). Patients with 3TC-resistant triple mutants had HBV genotype-D, high serum HBV DNA load and elevated alanine aminotransferase level, and presence of cccDNA in their serum. CONCLUSIONS: Considering this alarmingly high incidence of 3TC-resistant triple mutation and its possible clinical/public health implications, proper management of 3TC-resistance among HIV-HBV-coinfected patients is an urgent necessity in India.
Sequence Data KJ958441-KJ958471
Mutation Information
Note
Basic Characteristics of Mutations
  • Mutation Site: The specific location in a gene or protein sequence where a change occurs.
  • Mutation Level: The level at which a mutation occurs, including the nucleotide or amino acid level.
  • Mutation Type: The nature of the mutation, such as missense mutation, nonsense mutation, synonymous mutation, etc.
  • Gene/Protein/Region: Refers to the specific region of the virus where the mutation occurs. Including viral genes, viral proteins, or a specific viral genome region. If the article does not specifically indicate the relationship between the mutation and its correspondence, the main
  • Gene/Protein/Region studied in the article is marked.
  • Genotype/Subtype: Refers to the viral genotype or subtype where the mutation occurs. If the article does not specifically indicate the relationship between the mutation and its correspondence, the main Genotype/Subtype studied in the article is marked.
  • Viral Reference: Refers to the standard virus strain used to compare and analyze viral sequences.
Functional Impact and Mechanisms
  • Disease: An abnormal physiological state with specific symptoms and signs caused by viral infection.
  • Immune: The article focuses on the study of mutations and immune.
  • Target Gene: Host genes that viral mutations may affect.
Clinical and Epidemiological Correlations
  • Clinical Information: The study is a clinical or epidemiological study and provides basic information about the population.
  • Treatment: The study mentioned a certain treatment method, such as drug resistance caused by mutations. If the study does not specifically indicate the relationship between mutations and their correspondence treatment, the main treatment studied in the article is marked.
  • Location: The source of the research data.
Literature Information
  • Sequence Data: The study provides the data accession number.