Cargando…

A Novel AURKA Mutant-Induced Early-Onset Severe Hepatocarcinogenesis Greater than Wild-Type via Activating Different Pathways in Zebrafish

Aurora A kinase (AURKA) is an important regulator in mitotic progression and is overexpressed frequently in human cancers, including hepatocellular carcinoma (HCC). Many AURKA mutations were identified in cancer patients. Overexpressing wild-type Aurka developed a low incidence of hepatic tumors aft...

Descripción completa

Detalles Bibliográficos
Autores principales: Su, Zhong-Liang, Su, Chien-Wei, Huang, Yi-Luen, Yang, Wan-Yu, Sampurna, Bonifasius Putera, Ouchi, Toru, Lee, Kuan-Lin, Wu, Chen-Sheng, Wang, Horng-Dar, Yuh, Chiou-Hwa
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2019
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6678475/
https://www.ncbi.nlm.nih.gov/pubmed/31269749
http://dx.doi.org/10.3390/cancers11070927
_version_ 1783441109847900160
author Su, Zhong-Liang
Su, Chien-Wei
Huang, Yi-Luen
Yang, Wan-Yu
Sampurna, Bonifasius Putera
Ouchi, Toru
Lee, Kuan-Lin
Wu, Chen-Sheng
Wang, Horng-Dar
Yuh, Chiou-Hwa
author_facet Su, Zhong-Liang
Su, Chien-Wei
Huang, Yi-Luen
Yang, Wan-Yu
Sampurna, Bonifasius Putera
Ouchi, Toru
Lee, Kuan-Lin
Wu, Chen-Sheng
Wang, Horng-Dar
Yuh, Chiou-Hwa
author_sort Su, Zhong-Liang
collection PubMed
description Aurora A kinase (AURKA) is an important regulator in mitotic progression and is overexpressed frequently in human cancers, including hepatocellular carcinoma (HCC). Many AURKA mutations were identified in cancer patients. Overexpressing wild-type Aurka developed a low incidence of hepatic tumors after long latency in mice. However, none of the AURKA mutant animal models have ever been described. The mechanism of mutant AURKA-mediated hepatocarcinogenesis is still unclear. A novel AURKA mutation with a.a.352 Valine to Isoleucine (V352I) was identified from clinical specimens. By using liver-specific transgenic fish overexpressing both the mutant and wild-type AURKA, the AURKA(V352I)-induced hepatocarcinogenesis was earlier and much more severe than wild-type AURKA. Although an increase of the expression of lipogenic enzyme and lipogenic factor was observed in both AURKA(V352I) and AURKA(WT) transgenic fish, AURKA(V352I) has a greater probability to promote fibrosis at 3 months compared to AURKA(WT). Furthermore, the expression levels of cell cycle/proliferation markers were higher in the AURKA(V352I) mutant than AURKA(WT) in transgenic fish, implying that the AURKA(V352I) mutant may accelerate HCC progression. Moreover, we found that the AURKA(V352I) mutant activates AKT signaling and increases nuclear β-catenin, but AURKA(WT) only activates membrane form β-catenin, which may account for the differences. In this study, we provide a new insight, that the AURKA(V352I) mutation contributes to early onset hepatocarcinogenesis, possibly through activation of different pathways than AURKA(WT). This transgenic fish may serve as a drug-screening platform for potential precision medicine therapeutics.
format Online
Article
Text
id pubmed-6678475
institution National Center for Biotechnology Information
language English
publishDate 2019
publisher MDPI
record_format MEDLINE/PubMed
spelling pubmed-66784752019-08-19 A Novel AURKA Mutant-Induced Early-Onset Severe Hepatocarcinogenesis Greater than Wild-Type via Activating Different Pathways in Zebrafish Su, Zhong-Liang Su, Chien-Wei Huang, Yi-Luen Yang, Wan-Yu Sampurna, Bonifasius Putera Ouchi, Toru Lee, Kuan-Lin Wu, Chen-Sheng Wang, Horng-Dar Yuh, Chiou-Hwa Cancers (Basel) Article Aurora A kinase (AURKA) is an important regulator in mitotic progression and is overexpressed frequently in human cancers, including hepatocellular carcinoma (HCC). Many AURKA mutations were identified in cancer patients. Overexpressing wild-type Aurka developed a low incidence of hepatic tumors after long latency in mice. However, none of the AURKA mutant animal models have ever been described. The mechanism of mutant AURKA-mediated hepatocarcinogenesis is still unclear. A novel AURKA mutation with a.a.352 Valine to Isoleucine (V352I) was identified from clinical specimens. By using liver-specific transgenic fish overexpressing both the mutant and wild-type AURKA, the AURKA(V352I)-induced hepatocarcinogenesis was earlier and much more severe than wild-type AURKA. Although an increase of the expression of lipogenic enzyme and lipogenic factor was observed in both AURKA(V352I) and AURKA(WT) transgenic fish, AURKA(V352I) has a greater probability to promote fibrosis at 3 months compared to AURKA(WT). Furthermore, the expression levels of cell cycle/proliferation markers were higher in the AURKA(V352I) mutant than AURKA(WT) in transgenic fish, implying that the AURKA(V352I) mutant may accelerate HCC progression. Moreover, we found that the AURKA(V352I) mutant activates AKT signaling and increases nuclear β-catenin, but AURKA(WT) only activates membrane form β-catenin, which may account for the differences. In this study, we provide a new insight, that the AURKA(V352I) mutation contributes to early onset hepatocarcinogenesis, possibly through activation of different pathways than AURKA(WT). This transgenic fish may serve as a drug-screening platform for potential precision medicine therapeutics. MDPI 2019-07-02 /pmc/articles/PMC6678475/ /pubmed/31269749 http://dx.doi.org/10.3390/cancers11070927 Text en © 2019 by the authors. Licensee MDPI, Basel, Switzerland. This article is an open access article distributed under the terms and conditions of the Creative Commons Attribution (CC BY) license (http://creativecommons.org/licenses/by/4.0/).
spellingShingle Article
Su, Zhong-Liang
Su, Chien-Wei
Huang, Yi-Luen
Yang, Wan-Yu
Sampurna, Bonifasius Putera
Ouchi, Toru
Lee, Kuan-Lin
Wu, Chen-Sheng
Wang, Horng-Dar
Yuh, Chiou-Hwa
A Novel AURKA Mutant-Induced Early-Onset Severe Hepatocarcinogenesis Greater than Wild-Type via Activating Different Pathways in Zebrafish
title A Novel AURKA Mutant-Induced Early-Onset Severe Hepatocarcinogenesis Greater than Wild-Type via Activating Different Pathways in Zebrafish
title_full A Novel AURKA Mutant-Induced Early-Onset Severe Hepatocarcinogenesis Greater than Wild-Type via Activating Different Pathways in Zebrafish
title_fullStr A Novel AURKA Mutant-Induced Early-Onset Severe Hepatocarcinogenesis Greater than Wild-Type via Activating Different Pathways in Zebrafish
title_full_unstemmed A Novel AURKA Mutant-Induced Early-Onset Severe Hepatocarcinogenesis Greater than Wild-Type via Activating Different Pathways in Zebrafish
title_short A Novel AURKA Mutant-Induced Early-Onset Severe Hepatocarcinogenesis Greater than Wild-Type via Activating Different Pathways in Zebrafish
title_sort novel aurka mutant-induced early-onset severe hepatocarcinogenesis greater than wild-type via activating different pathways in zebrafish
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6678475/
https://www.ncbi.nlm.nih.gov/pubmed/31269749
http://dx.doi.org/10.3390/cancers11070927
work_keys_str_mv AT suzhongliang anovelaurkamutantinducedearlyonsetseverehepatocarcinogenesisgreaterthanwildtypeviaactivatingdifferentpathwaysinzebrafish
AT suchienwei anovelaurkamutantinducedearlyonsetseverehepatocarcinogenesisgreaterthanwildtypeviaactivatingdifferentpathwaysinzebrafish
AT huangyiluen anovelaurkamutantinducedearlyonsetseverehepatocarcinogenesisgreaterthanwildtypeviaactivatingdifferentpathwaysinzebrafish
AT yangwanyu anovelaurkamutantinducedearlyonsetseverehepatocarcinogenesisgreaterthanwildtypeviaactivatingdifferentpathwaysinzebrafish
AT sampurnabonifasiusputera anovelaurkamutantinducedearlyonsetseverehepatocarcinogenesisgreaterthanwildtypeviaactivatingdifferentpathwaysinzebrafish
AT ouchitoru anovelaurkamutantinducedearlyonsetseverehepatocarcinogenesisgreaterthanwildtypeviaactivatingdifferentpathwaysinzebrafish
AT leekuanlin anovelaurkamutantinducedearlyonsetseverehepatocarcinogenesisgreaterthanwildtypeviaactivatingdifferentpathwaysinzebrafish
AT wuchensheng anovelaurkamutantinducedearlyonsetseverehepatocarcinogenesisgreaterthanwildtypeviaactivatingdifferentpathwaysinzebrafish
AT wanghorngdar anovelaurkamutantinducedearlyonsetseverehepatocarcinogenesisgreaterthanwildtypeviaactivatingdifferentpathwaysinzebrafish
AT yuhchiouhwa anovelaurkamutantinducedearlyonsetseverehepatocarcinogenesisgreaterthanwildtypeviaactivatingdifferentpathwaysinzebrafish
AT suzhongliang novelaurkamutantinducedearlyonsetseverehepatocarcinogenesisgreaterthanwildtypeviaactivatingdifferentpathwaysinzebrafish
AT suchienwei novelaurkamutantinducedearlyonsetseverehepatocarcinogenesisgreaterthanwildtypeviaactivatingdifferentpathwaysinzebrafish
AT huangyiluen novelaurkamutantinducedearlyonsetseverehepatocarcinogenesisgreaterthanwildtypeviaactivatingdifferentpathwaysinzebrafish
AT yangwanyu novelaurkamutantinducedearlyonsetseverehepatocarcinogenesisgreaterthanwildtypeviaactivatingdifferentpathwaysinzebrafish
AT sampurnabonifasiusputera novelaurkamutantinducedearlyonsetseverehepatocarcinogenesisgreaterthanwildtypeviaactivatingdifferentpathwaysinzebrafish
AT ouchitoru novelaurkamutantinducedearlyonsetseverehepatocarcinogenesisgreaterthanwildtypeviaactivatingdifferentpathwaysinzebrafish
AT leekuanlin novelaurkamutantinducedearlyonsetseverehepatocarcinogenesisgreaterthanwildtypeviaactivatingdifferentpathwaysinzebrafish
AT wuchensheng novelaurkamutantinducedearlyonsetseverehepatocarcinogenesisgreaterthanwildtypeviaactivatingdifferentpathwaysinzebrafish
AT wanghorngdar novelaurkamutantinducedearlyonsetseverehepatocarcinogenesisgreaterthanwildtypeviaactivatingdifferentpathwaysinzebrafish
AT yuhchiouhwa novelaurkamutantinducedearlyonsetseverehepatocarcinogenesisgreaterthanwildtypeviaactivatingdifferentpathwaysinzebrafish