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=== Mechanism of HBV/HDV Infection ===
=== Mechanism of HBV/HDV Infection ===
HBV and HDV viruses are transported through NTCP via secondary active transport. After binding to NTCP in the <scene name='95/952697/Ntcp_open-pore_state/8'>open-pore state</scene>, the viruses remain bound until low bile salt levels in the blood shift equilibria enough that [https://en.wikipedia.org/wiki/Endocytosis endocytosis] of the virus occurs. Once inside the cell, the viral genetic information is released and infection begins. The exact mechanism of how HBV and HDV bind to NTCP is not certain, although <scene name='95/952696/Residues_84-87_and_157-165_new/1'>two critical sites</scene> have been identified on NTCP: residues <scene name='95/952696/Residues_84-87_new/1'>84-87</scene> and <scene name='95/952696/Residues_157-165_new/1'>157-165</scene>.<ref name="Park" /> An additional [https://en.wikipedia.org/wiki/Single-nucleotide_polymorphism single-nucleotide polymorphism] was discovered in East Asia involving <scene name='95/952696/Residue_267/1'>Residue 267</scene> being mutated from serine to phenylalanine. This mutation prevented HBV/HDV infection. Another mutation, replacing <scene name='95/952696/Leucine_residues/1'>L27, L31, and L35</scene> with tryptophan presumably blocks the preS1 binding site preventing proper HBV/HDV infection.<ref name="Park" /> It has also been shown that [https://en.wikipedia.org/wiki/Myristoylation myristoylation] of the HBV/HDV capsid is vital for recognition by NTCP, as well as residues 8-17 on HBV/HDV (sequence: NPLGFFPDHQ). There are two proposed mechanisms for how HBV/HDV binds to NTCP. The first proposes binding of the myristoyl group to the host cell membrane, while residues 8-17 interact with NTCP residues 157-165. The second proposes binding of the myristoyl group with residues 157-165 in the pore.<Ref name="Zhang"> Zhang X, Zhang Q, Peng Q, Zhou J, Liao L, Sun X, Zhang L, Gong T. Hepatitis B virus preS1-derived lipopeptide functionalized liposomes for targeting of hepatic cells. Biomaterials. 2014 Jul;35(23):6130-41. [https://dx.doi.org/10.1016/j.biomaterials.2014.04.037 DOI: 10.1016/j.biomaterials.2014.04.037]. </Ref>
HBV and HDV viruses are transported through NTCP via secondary active transport. After binding to NTCP in the <scene name='95/952697/Ntcp_open-pore_state/8'>open-pore state</scene>, the viruses remain bound until low bile salt levels in the blood shift equilibria enough that [https://en.wikipedia.org/wiki/Endocytosis endocytosis] of the virus occurs. Once inside the cell, the viral genetic information is released and infection begins. The exact mechanism of how HBV and HDV bind to NTCP is not certain, although <scene name='95/952696/Residues_84-87_and_157-165_new/1'>two critical sites</scene> have been identified on NTCP: residues <scene name='95/952696/Residues_84-87_new/1'>84-87</scene> and <scene name='95/952696/Residues_157-165_new/1'>157-165</scene>.<ref name="Park" /> An additional [https://en.wikipedia.org/wiki/Single-nucleotide_polymorphism single-nucleotide polymorphism] was discovered in East Asia involving <scene name='95/952696/Residue_267/3'>Residue 267</scene> being mutated from serine to phenylalanine. This mutation prevented HBV/HDV infection. Another mutation, replacing <scene name='95/952696/Leucine_residues/1'>L27, L31, and L35</scene> with tryptophan presumably blocks the preS1 binding site preventing proper HBV/HDV infection.<ref name="Park" /> It has also been shown that [https://en.wikipedia.org/wiki/Myristoylation myristoylation] of the HBV/HDV capsid is vital for recognition by NTCP, as well as residues 8-17 on HBV/HDV (sequence: NPLGFFPDHQ). There are two proposed mechanisms for how HBV/HDV binds to NTCP. The first proposes binding of the myristoyl group to the host cell membrane, while residues 8-17 interact with NTCP residues 157-165. The second proposes binding of the myristoyl group with residues 157-165 in the pore.<Ref name="Zhang"> Zhang X, Zhang Q, Peng Q, Zhou J, Liao L, Sun X, Zhang L, Gong T. Hepatitis B virus preS1-derived lipopeptide functionalized liposomes for targeting of hepatic cells. Biomaterials. 2014 Jul;35(23):6130-41. [https://dx.doi.org/10.1016/j.biomaterials.2014.04.037 DOI: 10.1016/j.biomaterials.2014.04.037]. </Ref>


== Medical Relevance ==
== Medical Relevance ==

Revision as of 23:18, 2 April 2023

Sodium-taurocholate Co-transporting Polypeptide

Sodium-taurocholate co-transporting Polypeptide (NTCP) 7ZYI. The top is extracellular in relation to the hepatocyte and the bottom is intracellular. Purple spheres represent Na+ ions and grey surfaces represent substrate.

Drag the structure with the mouse to rotate

References


Student Contributors

  • Ben Minor
  • Maggie Samm
  • Zac Stanley