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首页> 外文期刊>Journal of Medical Virology >Evolution of HBV S-gene in the backdrop of HDV co-infection
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Evolution of HBV S-gene in the backdrop of HDV co-infection

机译:HBV S-基因在HDV共感染背景下的演变

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摘要

HBV-HDV co-infected people have a higher chance of developing cirrhosis, fulminant hepatitis, and hepatocellular carcinoma (HCC) compared to those infected only with HBV. The present study was conducted to investigate HBV genotypes and phylogeny among HBV mono-infected and HBV-HDV co-infected patients, as well as analyze mutations in the surface gene of HBV in mono-infected and co-infected patients. A total of 100 blood samples (50 co-infected with HBV and HDV, and 50 mono-infected with HBV only) were collected for this study. HBV DNA was extracted from patient sera and partial surface antigen gene was amplified from HBV genome using polymerase chain reaction. HBV S gene was sequenced from 49 mono-infected and 36 co-infected patients and analyzed to identify HBV genotypes and phylogenetic patterns. Subsequently, HBV S amino acid sequences were analyzed for mutational differences between sequences from mono- and co-infected patients. HBV genotype D was predominantly found in both mono-infected as well as co-infected patients. Phylogenetic analysis showed the divergence of HBV sequences, between mono- and co-infected patients, into two distinct clusters. HBV S gene mutation analysis revealed certain mutations in HBV-HDV co-infected subjects to be distinct from those found in mono-infected patients. This might indicate the evolution of HBV S gene under selection pressures generated from HDV coinfection.
机译:与仅在HBV感染的人相比,HBV-HDV共感染的人有更高的肝硬化,暴发性肝炎和肝细胞癌(HCC)的机会。进行了本研究以研究HBV单型感染和HBV-HDV共感染患者的HBV基因型和系统发育,以及单感染和共感染患者HBV的表面基因中的突变。收集总共100种血液样品(50次与HBV和HDV和HBV的HDV,50个单一感染的HBV)进行该研究。从患者血清中提取HBV DNA,使用聚合酶链反应从HBV基因组扩增部分表面抗原基因。 HBV S基因由49个单型感染和36名共感染患者进行测序,并分析以鉴定HBV基因型和系统发育模式。随后,分析了HBV S氨基酸序列以在单次和共感染患者之间的序列之间的突变差异。 HBV基因型D主要发现在单一感染和共感染的患者中。系统发育分析表明,单声道和共感染患者之间的HBV序列分为两个不同的簇。 HBV S基因突变分析揭示了HBV-HDV共感染受试者中的某些突变,以不同于单型感染患者中的那些。这可能表明HBV S基因在从HDV辛切入产生的选择压力下的演变。

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