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Basic Characteristics of Mutations
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Mutation Site
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G2765A |
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Mutation Site Sentence
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In total, 35 patients were enrolled and 13 patients (37.1%) had a single base substitution in the pre-S1 promoter region; the most frequent substitution was a G-to-A substitution at the 2765th base (G2765A) in the Sp1 region. |
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Mutation Level
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Nucleotide level |
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Mutation Type
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Gene/Protein/Region
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PreS1 |
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Standardized Encoding Gene
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S
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Genotype/Subtype
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C |
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Viral Reference
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-
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Functional Impact and Mechanisms
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Disease
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Hepatitis B Virus Infection
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Immune
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- |
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Target Gene
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-
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Clinical and Epidemiological Correlations
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Clinical Information
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Y |
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Treatment
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- |
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Location
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Japan |
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Literature Information
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PMID
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31046787
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Title
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A substitution in the pre-S1 promoter region is associated with the viral regulation of hepatitis B virus
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Author
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Ogura S,Tameda M,Sugimoto K,Ikejiri M,Usui M,Ito M,Takei Y
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Journal
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Virology journal
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Journal Info
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2019 May 2;16(1):59
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Abstract
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BACKGROUND: Much evidence has demonstrated the influence of Hepatitis B virus (HBV) mutations on the clinical course of HBV infection. As large (L) protein plays a crucial role for viral entry, we hypothesized that mutations in the pre-S1 promoter region might affect the expression of L protein and subsequently change the biological characters of virus. METHODS: Patients infected with genotype C HBV were enrolled for analysis. HBV DNA sequences were inserted into a TA cloning vector and analyzed. To evaluate the effects of mutations in the pre-S1 promoter region, promoter activity and the expression of mRNA and L protein were analyzed using HepG2 cells. RESULTS: In total, 35 patients were enrolled and 13 patients (37.1%) had a single base substitution in the pre-S1 promoter region; the most frequent substitution was a G-to-A substitution at the 2765th base (G2765A) in the Sp1 region. The HBV viral load showed a negative correlation with the substitution ratio of the Sp1 region or G2765A (r = - 0.493 and - 0.473, respectively). Among those with a viral load =5.0 log IU/ml, patients with the G2765A substitution showed a significantly lower HBV viral load than those with the wild-type sequence. HepG2 cells transfected with the G2765A substitution vector showed reduced luciferase activity of the pre-S1 promoter, as well as reduced expression of pre-S1 mRNA and L protein. Furthermore, the G2765A substitution greatly reduced the L protein expression level of vector-produced virus particles. CONCLUSION: G2765A substitution in the pre-S1 promoter reduced the expression of L protein and resulted in a low viral load and less severe disease in chronic HBV infections.
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Sequence Data
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LC360507.1
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