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14‐3‐3ζ binds to hepatitis B virus protein X and maintains its protein stability in hepatocellular carcinoma cells

14‐3‐3ζ, a phosphopeptide‐binding molecule, is reportedly overexpressed in the cancerous tissues of patients with hepatocellular carcinoma (HCC). Hepatitis B virus (HBV) protein X (HBx) draws intensive attention in HBV‐related HCC because it not only regulates HBV replication, but also promotes carc...

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Autores principales: Tang, Yufu, Zhang, Yibing, Wang, Chunhui, Sun, Zhongyi, Li, Longfei, Dong, Jiahong, Zhou, Wenping
Formato: Online Artículo Texto
Lenguaje:English
Publicado: John Wiley and Sons Inc. 2018
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6247021/
https://www.ncbi.nlm.nih.gov/pubmed/30358169
http://dx.doi.org/10.1002/cam4.1512
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author Tang, Yufu
Zhang, Yibing
Wang, Chunhui
Sun, Zhongyi
Li, Longfei
Dong, Jiahong
Zhou, Wenping
author_facet Tang, Yufu
Zhang, Yibing
Wang, Chunhui
Sun, Zhongyi
Li, Longfei
Dong, Jiahong
Zhou, Wenping
author_sort Tang, Yufu
collection PubMed
description 14‐3‐3ζ, a phosphopeptide‐binding molecule, is reportedly overexpressed in the cancerous tissues of patients with hepatocellular carcinoma (HCC). Hepatitis B virus (HBV) protein X (HBx) draws intensive attention in HBV‐related HCC because it not only regulates HBV replication, but also promotes carcinogenesis by interacting with various tumor or antitumor molecules. This study is performed to investigate whether and how 14‐3‐3ζ interacts with HBx. The coimmunoprecipitation (Co‐IP) results showed that 14‐3‐3ζ bond to HBx in HBV‐infected Hep3B HCC cells and CSQT‐2 portal vein tumor thrombosis (PVTT) cells. By performing Co‐IP assay in HBV‐free Huh7 cells expressing wild‐type HBx, mutant HBx‐S31A, or HBx‐S31D (serine(31) was mutated into alanine(31) or aspartic acid(31)), we found that the phosphorylated serine(31) with its near amino acid residues constituted a RPLphosphoS(31) GP (R, arginine; P, proline; L, leucine; S, serine; G, glycine) motif in HBx for 14‐3‐3ζ docking. This 14‐3‐3ζ‐HBx interaction was partly impaired when Akt signaling transduction was blocked by LY294002. Furthermore, 14‐3‐3ζ silencing augmented HBx ubiquitination and decreased its expression in cancer cells and xenograft tumor. The migratory and invasive abilities of CSQT‐2 cells were inhibited upon 14‐3‐3ζ silencing, whereas partly restored by HBx overexpression. Additionally, 14‐3‐3ζ positively correlated with HBx to be overexpressed in the primary HCC tissues (r = 0.344) and metastatic PVTT (r = 0.348). In summary, findings of this study reveal a novel 14‐3‐3ζ‐HBx interaction in HCC cells and suggest 14‐3‐3ζ as a candidate target for treating HBV‐related HCC.
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spelling pubmed-62470212018-11-26 14‐3‐3ζ binds to hepatitis B virus protein X and maintains its protein stability in hepatocellular carcinoma cells Tang, Yufu Zhang, Yibing Wang, Chunhui Sun, Zhongyi Li, Longfei Dong, Jiahong Zhou, Wenping Cancer Med Cancer Biology 14‐3‐3ζ, a phosphopeptide‐binding molecule, is reportedly overexpressed in the cancerous tissues of patients with hepatocellular carcinoma (HCC). Hepatitis B virus (HBV) protein X (HBx) draws intensive attention in HBV‐related HCC because it not only regulates HBV replication, but also promotes carcinogenesis by interacting with various tumor or antitumor molecules. This study is performed to investigate whether and how 14‐3‐3ζ interacts with HBx. The coimmunoprecipitation (Co‐IP) results showed that 14‐3‐3ζ bond to HBx in HBV‐infected Hep3B HCC cells and CSQT‐2 portal vein tumor thrombosis (PVTT) cells. By performing Co‐IP assay in HBV‐free Huh7 cells expressing wild‐type HBx, mutant HBx‐S31A, or HBx‐S31D (serine(31) was mutated into alanine(31) or aspartic acid(31)), we found that the phosphorylated serine(31) with its near amino acid residues constituted a RPLphosphoS(31) GP (R, arginine; P, proline; L, leucine; S, serine; G, glycine) motif in HBx for 14‐3‐3ζ docking. This 14‐3‐3ζ‐HBx interaction was partly impaired when Akt signaling transduction was blocked by LY294002. Furthermore, 14‐3‐3ζ silencing augmented HBx ubiquitination and decreased its expression in cancer cells and xenograft tumor. The migratory and invasive abilities of CSQT‐2 cells were inhibited upon 14‐3‐3ζ silencing, whereas partly restored by HBx overexpression. Additionally, 14‐3‐3ζ positively correlated with HBx to be overexpressed in the primary HCC tissues (r = 0.344) and metastatic PVTT (r = 0.348). In summary, findings of this study reveal a novel 14‐3‐3ζ‐HBx interaction in HCC cells and suggest 14‐3‐3ζ as a candidate target for treating HBV‐related HCC. John Wiley and Sons Inc. 2018-10-24 /pmc/articles/PMC6247021/ /pubmed/30358169 http://dx.doi.org/10.1002/cam4.1512 Text en © 2018 The Authors. Cancer Medicine published by John Wiley & Sons Ltd. This is an open access article under the terms of the http://creativecommons.org/licenses/by/4.0/ License, which permits use, distribution and reproduction in any medium, provided the original work is properly cited.
spellingShingle Cancer Biology
Tang, Yufu
Zhang, Yibing
Wang, Chunhui
Sun, Zhongyi
Li, Longfei
Dong, Jiahong
Zhou, Wenping
14‐3‐3ζ binds to hepatitis B virus protein X and maintains its protein stability in hepatocellular carcinoma cells
title 14‐3‐3ζ binds to hepatitis B virus protein X and maintains its protein stability in hepatocellular carcinoma cells
title_full 14‐3‐3ζ binds to hepatitis B virus protein X and maintains its protein stability in hepatocellular carcinoma cells
title_fullStr 14‐3‐3ζ binds to hepatitis B virus protein X and maintains its protein stability in hepatocellular carcinoma cells
title_full_unstemmed 14‐3‐3ζ binds to hepatitis B virus protein X and maintains its protein stability in hepatocellular carcinoma cells
title_short 14‐3‐3ζ binds to hepatitis B virus protein X and maintains its protein stability in hepatocellular carcinoma cells
title_sort 14‐3‐3ζ binds to hepatitis b virus protein x and maintains its protein stability in hepatocellular carcinoma cells
topic Cancer Biology
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6247021/
https://www.ncbi.nlm.nih.gov/pubmed/30358169
http://dx.doi.org/10.1002/cam4.1512
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