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Sodium taurocholate cotransporting polypeptide is a functional receptor for human hepatitis B and D virus

eLife · 2012 · Vol. 1 · pp. e00049–e00049
Huan YanGuocai ZhongGuangwei XuWenhui HeZhiyi JingZhenchao GaoYi HuangYonghe QiXiaozhong PengHaimin WangLiran FuMei SongChen PanWenqing GaoB RenYinyan SunTao CaiXiaofeng FengJianhua SuiWenhui Li

Abstract

Human hepatitis B virus (HBV) infection and HBV-related diseases remain a major public health problem. Individuals coinfected with its satellite hepatitis D virus (HDV) have more severe disease. Cellular entry of both viruses is mediated by HBV envelope proteins. The pre-S1 domain of the large envelope protein is a key determinant for receptor(s) binding. However, the identity of the receptor(s) is unknown. Here, by using near zero distance photo-cross-linking and tandem affinity purification, we revealed that the receptor-binding region of pre-S1 specifically interacts with sodium taurocholate cotransporting polypeptide (NTCP), a multiple transmembrane transporter predominantly expressed in the liver. Silencing NTCP inhibited HBV and HDV infection, while exogenous NTCP expression rendered nonsusceptible hepatocarcinoma cells susceptible to these viral infections. Moreover, replacing amino acids 157-165 of nonfunctional monkey NTCP with the human counterpart conferred its ability in supporting both viral infections. Our results demonstrate that NTCP is a functional receptor for HBV and HDV.

Hepatitis B Virus StudiesDrug Transport and Resistance MechanismsLiver Disease Diagnosis and TreatmentVirologyHepatitis B virusReceptorViral entryBiologyHepatitis D virusVirusGene silencingTransmembrane domainTransmembrane protein

MeSH terms

Amino Acid SequenceAnimalsBiological TransportCell LineHepatitis Delta VirusHepatitis B virusHumansLiverMolecular Sequence DataPeptidesProtein BindingReceptors, VirusTaurocholic AcidTupaiaViral Envelope Proteins

Funding

  • Ministry of Science and Technology of the People's Republic of China
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Cited by
Molecular biology of hepatitis B virus infection
Virology · 2015 · 844 citations
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