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Heteroaryldihydropyrimidine (HAP) and Sulfamoylbenzamide (SBA) Inhibit Hepatitis B Virus Replication by Different Molecular Mechanisms

Heteroaryldihydropyrimidine (HAP) and sulfamoylbenzamide (SBA) are promising non-nucleos(t)ide HBV replication inhibitors. HAPs are known to promote core protein mis-assembly, but the molecular mechanism of abnormal assembly is still elusive. Likewise, the assembly status of core protein induced by...

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Autores principales: Zhou, Zheng, Hu, Taishan, Zhou, Xue, Wildum, Steffen, Garcia-Alcalde, Fernando, Xu, Zhiheng, Wu, Daitze, Mao, Yi, Tian, Xiaojun, Zhou, Yuan, Shen, Fang, Zhang, Zhisen, Tang, Guozhi, Najera, Isabel, Yang, Guang, Shen, Hong C., Young, John A. T., Qin, Ning
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Nature Publishing Group 2017
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5304331/
https://www.ncbi.nlm.nih.gov/pubmed/28205569
http://dx.doi.org/10.1038/srep42374
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author Zhou, Zheng
Hu, Taishan
Zhou, Xue
Wildum, Steffen
Garcia-Alcalde, Fernando
Xu, Zhiheng
Wu, Daitze
Mao, Yi
Tian, Xiaojun
Zhou, Yuan
Shen, Fang
Zhang, Zhisen
Tang, Guozhi
Najera, Isabel
Yang, Guang
Shen, Hong C.
Young, John A. T.
Qin, Ning
author_facet Zhou, Zheng
Hu, Taishan
Zhou, Xue
Wildum, Steffen
Garcia-Alcalde, Fernando
Xu, Zhiheng
Wu, Daitze
Mao, Yi
Tian, Xiaojun
Zhou, Yuan
Shen, Fang
Zhang, Zhisen
Tang, Guozhi
Najera, Isabel
Yang, Guang
Shen, Hong C.
Young, John A. T.
Qin, Ning
author_sort Zhou, Zheng
collection PubMed
description Heteroaryldihydropyrimidine (HAP) and sulfamoylbenzamide (SBA) are promising non-nucleos(t)ide HBV replication inhibitors. HAPs are known to promote core protein mis-assembly, but the molecular mechanism of abnormal assembly is still elusive. Likewise, the assembly status of core protein induced by SBA remains unknown. Here we show that SBA, unlike HAP, does not promote core protein mis-assembly. Interestingly, two reference compounds HAP_R01 and SBA_R01 bind to the same pocket at the dimer-dimer interface in the crystal structures of core protein Y132A hexamer. The striking difference lies in a unique hydrophobic subpocket that is occupied by the thiazole group of HAP_R01, but is unperturbed by SBA_R01. Photoaffinity labeling confirms the HAP_R01 binding pose at the dimer-dimer interface on capsid and suggests a new mechanism of HAP-induced mis-assembly. Based on the common features in crystal structures we predict that T33 mutations generate similar susceptibility changes to both compounds. In contrast, mutations at positions in close contact with HAP-specific groups (P25A, P25S, or V124F) only reduce susceptibility to HAP_R01, but not to SBA_R01. Thus, HAP and SBA are likely to have distinctive resistance profiles. Notably, P25S and V124F substitutions exist in low-abundance quasispecies in treatment-naïve patients, suggesting potential clinical relevance.
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spelling pubmed-53043312017-03-14 Heteroaryldihydropyrimidine (HAP) and Sulfamoylbenzamide (SBA) Inhibit Hepatitis B Virus Replication by Different Molecular Mechanisms Zhou, Zheng Hu, Taishan Zhou, Xue Wildum, Steffen Garcia-Alcalde, Fernando Xu, Zhiheng Wu, Daitze Mao, Yi Tian, Xiaojun Zhou, Yuan Shen, Fang Zhang, Zhisen Tang, Guozhi Najera, Isabel Yang, Guang Shen, Hong C. Young, John A. T. Qin, Ning Sci Rep Article Heteroaryldihydropyrimidine (HAP) and sulfamoylbenzamide (SBA) are promising non-nucleos(t)ide HBV replication inhibitors. HAPs are known to promote core protein mis-assembly, but the molecular mechanism of abnormal assembly is still elusive. Likewise, the assembly status of core protein induced by SBA remains unknown. Here we show that SBA, unlike HAP, does not promote core protein mis-assembly. Interestingly, two reference compounds HAP_R01 and SBA_R01 bind to the same pocket at the dimer-dimer interface in the crystal structures of core protein Y132A hexamer. The striking difference lies in a unique hydrophobic subpocket that is occupied by the thiazole group of HAP_R01, but is unperturbed by SBA_R01. Photoaffinity labeling confirms the HAP_R01 binding pose at the dimer-dimer interface on capsid and suggests a new mechanism of HAP-induced mis-assembly. Based on the common features in crystal structures we predict that T33 mutations generate similar susceptibility changes to both compounds. In contrast, mutations at positions in close contact with HAP-specific groups (P25A, P25S, or V124F) only reduce susceptibility to HAP_R01, but not to SBA_R01. Thus, HAP and SBA are likely to have distinctive resistance profiles. Notably, P25S and V124F substitutions exist in low-abundance quasispecies in treatment-naïve patients, suggesting potential clinical relevance. Nature Publishing Group 2017-02-13 /pmc/articles/PMC5304331/ /pubmed/28205569 http://dx.doi.org/10.1038/srep42374 Text en Copyright © 2017, The Author(s) http://creativecommons.org/licenses/by/4.0/ This work is licensed under a Creative Commons Attribution 4.0 International License. The images or other third party material in this article are included in the article’s Creative Commons license, unless indicated otherwise in the credit line; if the material is not included under the Creative Commons license, users will need to obtain permission from the license holder to reproduce the material. To view a copy of this license, visit http://creativecommons.org/licenses/by/4.0/
spellingShingle Article
Zhou, Zheng
Hu, Taishan
Zhou, Xue
Wildum, Steffen
Garcia-Alcalde, Fernando
Xu, Zhiheng
Wu, Daitze
Mao, Yi
Tian, Xiaojun
Zhou, Yuan
Shen, Fang
Zhang, Zhisen
Tang, Guozhi
Najera, Isabel
Yang, Guang
Shen, Hong C.
Young, John A. T.
Qin, Ning
Heteroaryldihydropyrimidine (HAP) and Sulfamoylbenzamide (SBA) Inhibit Hepatitis B Virus Replication by Different Molecular Mechanisms
title Heteroaryldihydropyrimidine (HAP) and Sulfamoylbenzamide (SBA) Inhibit Hepatitis B Virus Replication by Different Molecular Mechanisms
title_full Heteroaryldihydropyrimidine (HAP) and Sulfamoylbenzamide (SBA) Inhibit Hepatitis B Virus Replication by Different Molecular Mechanisms
title_fullStr Heteroaryldihydropyrimidine (HAP) and Sulfamoylbenzamide (SBA) Inhibit Hepatitis B Virus Replication by Different Molecular Mechanisms
title_full_unstemmed Heteroaryldihydropyrimidine (HAP) and Sulfamoylbenzamide (SBA) Inhibit Hepatitis B Virus Replication by Different Molecular Mechanisms
title_short Heteroaryldihydropyrimidine (HAP) and Sulfamoylbenzamide (SBA) Inhibit Hepatitis B Virus Replication by Different Molecular Mechanisms
title_sort heteroaryldihydropyrimidine (hap) and sulfamoylbenzamide (sba) inhibit hepatitis b virus replication by different molecular mechanisms
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5304331/
https://www.ncbi.nlm.nih.gov/pubmed/28205569
http://dx.doi.org/10.1038/srep42374
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