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DHX9 interacts with APOBEC3B and attenuates the anti-HBV effect of APOBEC3B

Hepatitis B virus (HBV) is a partially double-stranded DNA virus that replicates by reverse transcription. We previously demonstrated that the host restriction factor-APOBEC3B (A3B) inhibited HBV replication which was dependent on its deaminase activity during reverse transcription. However, the hos...

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Autores principales: Chen, Yanmeng, Shen, Bocun, Zheng, Xiaochuan, Long, Quanxin, Xia, Jie, Huang, Yao, Cai, Xuefei, Wang, Deqiang, Chen, Juan, Tang, Ni, Huang, Ailong, Hu, Yuan
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Taylor & Francis 2020
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7033728/
https://www.ncbi.nlm.nih.gov/pubmed/32056513
http://dx.doi.org/10.1080/22221751.2020.1725398
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author Chen, Yanmeng
Shen, Bocun
Zheng, Xiaochuan
Long, Quanxin
Xia, Jie
Huang, Yao
Cai, Xuefei
Wang, Deqiang
Chen, Juan
Tang, Ni
Huang, Ailong
Hu, Yuan
author_facet Chen, Yanmeng
Shen, Bocun
Zheng, Xiaochuan
Long, Quanxin
Xia, Jie
Huang, Yao
Cai, Xuefei
Wang, Deqiang
Chen, Juan
Tang, Ni
Huang, Ailong
Hu, Yuan
author_sort Chen, Yanmeng
collection PubMed
description Hepatitis B virus (HBV) is a partially double-stranded DNA virus that replicates by reverse transcription. We previously demonstrated that the host restriction factor-APOBEC3B (A3B) inhibited HBV replication which was dependent on its deaminase activity during reverse transcription. However, the host factors involved in the process of regulating the anti-HBV function of A3B are less known. In this research, to obtain a comprehensive understanding of the interaction networks of A3B, we conducted coimmunoprecipitation and mass spectrometry to identify A3B-interacting proteins in the presence of HBV. By this approach, we determined that DExD/H-box helicase 9 (DHX9) suppressed the anti-HBV effect of A3B, and this suppression was dependent on their interaction. Although DHX9 did not affect the deamination activity of A3B in vitro assay or the viral DNA editing of A3B in HepG2-NTCP cells that support HBV infection, it inhibited the binding of A3B with pgRNA. These data suggest that DHX9 can interact with A3B and attenuate the anti-HBV efficacy of A3B. Abbreviations: 3D-PCR: differential DNA denaturation PCR; APOBEC3: apolipoprotein B mRNA-editing catalytic polypeptide 3; cccDNA: covalently closed circular DNA; co-IP: coimmunoprecipitation; DDX: DExD-box RNA helicases; HBc: HBV core protein; HBV: hepatitis B virus; HepAD38: HepG2 cell line stably transfected with HBV DNA; HepG2-NTCP: HepG2 cell line stably transfected with Na+/taurocholate cotransporter polypeptide; Huh7: human hepatoma cell line; pgRNA: pregenomic RNA; PPI: protein–protein interactions; RC DNA: relaxed circular DNA.
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spelling pubmed-70337282020-03-03 DHX9 interacts with APOBEC3B and attenuates the anti-HBV effect of APOBEC3B Chen, Yanmeng Shen, Bocun Zheng, Xiaochuan Long, Quanxin Xia, Jie Huang, Yao Cai, Xuefei Wang, Deqiang Chen, Juan Tang, Ni Huang, Ailong Hu, Yuan Emerg Microbes Infect Article Hepatitis B virus (HBV) is a partially double-stranded DNA virus that replicates by reverse transcription. We previously demonstrated that the host restriction factor-APOBEC3B (A3B) inhibited HBV replication which was dependent on its deaminase activity during reverse transcription. However, the host factors involved in the process of regulating the anti-HBV function of A3B are less known. In this research, to obtain a comprehensive understanding of the interaction networks of A3B, we conducted coimmunoprecipitation and mass spectrometry to identify A3B-interacting proteins in the presence of HBV. By this approach, we determined that DExD/H-box helicase 9 (DHX9) suppressed the anti-HBV effect of A3B, and this suppression was dependent on their interaction. Although DHX9 did not affect the deamination activity of A3B in vitro assay or the viral DNA editing of A3B in HepG2-NTCP cells that support HBV infection, it inhibited the binding of A3B with pgRNA. These data suggest that DHX9 can interact with A3B and attenuate the anti-HBV efficacy of A3B. Abbreviations: 3D-PCR: differential DNA denaturation PCR; APOBEC3: apolipoprotein B mRNA-editing catalytic polypeptide 3; cccDNA: covalently closed circular DNA; co-IP: coimmunoprecipitation; DDX: DExD-box RNA helicases; HBc: HBV core protein; HBV: hepatitis B virus; HepAD38: HepG2 cell line stably transfected with HBV DNA; HepG2-NTCP: HepG2 cell line stably transfected with Na+/taurocholate cotransporter polypeptide; Huh7: human hepatoma cell line; pgRNA: pregenomic RNA; PPI: protein–protein interactions; RC DNA: relaxed circular DNA. Taylor & Francis 2020-02-14 /pmc/articles/PMC7033728/ /pubmed/32056513 http://dx.doi.org/10.1080/22221751.2020.1725398 Text en © 2020 The Author(s). Published by Informa UK Limited, trading as Taylor & Francis Group, on behalf of Shanghai Shangyixun Cultural Communication Co., Ltd https://creativecommons.org/licenses/by/4.0/This is an Open Access article distributed under the terms of the Creative Commons Attribution License (http://creativecommons.org/licenses/by/4.0/ (https://creativecommons.org/licenses/by/4.0/) ), which permits unrestricted use, distribution, and reproduction in any medium, provided the original work is properly cited.
spellingShingle Article
Chen, Yanmeng
Shen, Bocun
Zheng, Xiaochuan
Long, Quanxin
Xia, Jie
Huang, Yao
Cai, Xuefei
Wang, Deqiang
Chen, Juan
Tang, Ni
Huang, Ailong
Hu, Yuan
DHX9 interacts with APOBEC3B and attenuates the anti-HBV effect of APOBEC3B
title DHX9 interacts with APOBEC3B and attenuates the anti-HBV effect of APOBEC3B
title_full DHX9 interacts with APOBEC3B and attenuates the anti-HBV effect of APOBEC3B
title_fullStr DHX9 interacts with APOBEC3B and attenuates the anti-HBV effect of APOBEC3B
title_full_unstemmed DHX9 interacts with APOBEC3B and attenuates the anti-HBV effect of APOBEC3B
title_short DHX9 interacts with APOBEC3B and attenuates the anti-HBV effect of APOBEC3B
title_sort dhx9 interacts with apobec3b and attenuates the anti-hbv effect of apobec3b
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7033728/
https://www.ncbi.nlm.nih.gov/pubmed/32056513
http://dx.doi.org/10.1080/22221751.2020.1725398
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