Cargando…

ahctf1 and kras mutations combine to amplify oncogenic stress and restrict liver overgrowth in a zebrafish model of hepatocellular carcinoma

The nucleoporin (NUP) ELYS, encoded by AHCTF1, is a large multifunctional protein with essential roles in nuclear pore assembly and mitosis. Using both larval and adult zebrafish models of hepatocellular carcinoma (HCC), in which the expression of an inducible mutant kras transgene (kras(G12V)) driv...

Descripción completa

Detalles Bibliográficos
Autores principales: Morgan, Kimberly J, Doggett, Karen, Geng, Fansuo, Mieruszynski, Stephen, Whitehead, Lachlan, Smith, Kelly A, Hogan, Benjamin M, Simons, Cas, Baillie, Gregory J, Molania, Ramyar, Papenfuss, Anthony T, Hall, Thomas E, Ober, Elke A, Stainier, Didier YR, Gong, Zhiyuan, Heath, Joan K
Formato: Online Artículo Texto
Lenguaje:English
Publicado: eLife Sciences Publications, Ltd 2023
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9897728/
https://www.ncbi.nlm.nih.gov/pubmed/36648336
http://dx.doi.org/10.7554/eLife.73407
_version_ 1784882315298603008
author Morgan, Kimberly J
Doggett, Karen
Geng, Fansuo
Mieruszynski, Stephen
Whitehead, Lachlan
Smith, Kelly A
Hogan, Benjamin M
Simons, Cas
Baillie, Gregory J
Molania, Ramyar
Papenfuss, Anthony T
Hall, Thomas E
Ober, Elke A
Stainier, Didier YR
Gong, Zhiyuan
Heath, Joan K
author_facet Morgan, Kimberly J
Doggett, Karen
Geng, Fansuo
Mieruszynski, Stephen
Whitehead, Lachlan
Smith, Kelly A
Hogan, Benjamin M
Simons, Cas
Baillie, Gregory J
Molania, Ramyar
Papenfuss, Anthony T
Hall, Thomas E
Ober, Elke A
Stainier, Didier YR
Gong, Zhiyuan
Heath, Joan K
author_sort Morgan, Kimberly J
collection PubMed
description The nucleoporin (NUP) ELYS, encoded by AHCTF1, is a large multifunctional protein with essential roles in nuclear pore assembly and mitosis. Using both larval and adult zebrafish models of hepatocellular carcinoma (HCC), in which the expression of an inducible mutant kras transgene (kras(G12V)) drives hepatocyte-specific hyperplasia and liver enlargement, we show that reducing ahctf1 gene dosage by 50% markedly decreases liver volume, while non-hyperplastic tissues are unaffected. We demonstrate that in the context of cancer, ahctf1 heterozygosity impairs nuclear pore formation, mitotic spindle assembly, and chromosome segregation, leading to DNA damage and activation of a Tp53-dependent transcriptional programme that induces cell death and cell cycle arrest. Heterozygous expression of both ahctf1 and ranbp2 (encoding a second nucleoporin), or treatment of heterozygous ahctf1 larvae with the nucleocytoplasmic transport inhibitor, Selinexor, completely blocks kras(G12V)-driven hepatocyte hyperplasia. Gene expression analysis of patient samples in the liver hepatocellular carcinoma (LIHC) dataset in The Cancer Genome Atlas shows that high expression of one or more of the transcripts encoding the 10 components of the NUP107–160 subcomplex, which includes AHCTF1, is positively correlated with worse overall survival. These results provide a strong and feasible rationale for the development of novel cancer therapeutics that target ELYS function and suggest potential avenues for effective combinatorial treatments.
format Online
Article
Text
id pubmed-9897728
institution National Center for Biotechnology Information
language English
publishDate 2023
publisher eLife Sciences Publications, Ltd
record_format MEDLINE/PubMed
spelling pubmed-98977282023-02-04 ahctf1 and kras mutations combine to amplify oncogenic stress and restrict liver overgrowth in a zebrafish model of hepatocellular carcinoma Morgan, Kimberly J Doggett, Karen Geng, Fansuo Mieruszynski, Stephen Whitehead, Lachlan Smith, Kelly A Hogan, Benjamin M Simons, Cas Baillie, Gregory J Molania, Ramyar Papenfuss, Anthony T Hall, Thomas E Ober, Elke A Stainier, Didier YR Gong, Zhiyuan Heath, Joan K eLife Cancer Biology The nucleoporin (NUP) ELYS, encoded by AHCTF1, is a large multifunctional protein with essential roles in nuclear pore assembly and mitosis. Using both larval and adult zebrafish models of hepatocellular carcinoma (HCC), in which the expression of an inducible mutant kras transgene (kras(G12V)) drives hepatocyte-specific hyperplasia and liver enlargement, we show that reducing ahctf1 gene dosage by 50% markedly decreases liver volume, while non-hyperplastic tissues are unaffected. We demonstrate that in the context of cancer, ahctf1 heterozygosity impairs nuclear pore formation, mitotic spindle assembly, and chromosome segregation, leading to DNA damage and activation of a Tp53-dependent transcriptional programme that induces cell death and cell cycle arrest. Heterozygous expression of both ahctf1 and ranbp2 (encoding a second nucleoporin), or treatment of heterozygous ahctf1 larvae with the nucleocytoplasmic transport inhibitor, Selinexor, completely blocks kras(G12V)-driven hepatocyte hyperplasia. Gene expression analysis of patient samples in the liver hepatocellular carcinoma (LIHC) dataset in The Cancer Genome Atlas shows that high expression of one or more of the transcripts encoding the 10 components of the NUP107–160 subcomplex, which includes AHCTF1, is positively correlated with worse overall survival. These results provide a strong and feasible rationale for the development of novel cancer therapeutics that target ELYS function and suggest potential avenues for effective combinatorial treatments. eLife Sciences Publications, Ltd 2023-01-17 /pmc/articles/PMC9897728/ /pubmed/36648336 http://dx.doi.org/10.7554/eLife.73407 Text en © 2023, Morgan et al https://creativecommons.org/licenses/by/4.0/This article is distributed under the terms of the Creative Commons Attribution License (https://creativecommons.org/licenses/by/4.0/) , which permits unrestricted use and redistribution provided that the original author and source are credited.
spellingShingle Cancer Biology
Morgan, Kimberly J
Doggett, Karen
Geng, Fansuo
Mieruszynski, Stephen
Whitehead, Lachlan
Smith, Kelly A
Hogan, Benjamin M
Simons, Cas
Baillie, Gregory J
Molania, Ramyar
Papenfuss, Anthony T
Hall, Thomas E
Ober, Elke A
Stainier, Didier YR
Gong, Zhiyuan
Heath, Joan K
ahctf1 and kras mutations combine to amplify oncogenic stress and restrict liver overgrowth in a zebrafish model of hepatocellular carcinoma
title ahctf1 and kras mutations combine to amplify oncogenic stress and restrict liver overgrowth in a zebrafish model of hepatocellular carcinoma
title_full ahctf1 and kras mutations combine to amplify oncogenic stress and restrict liver overgrowth in a zebrafish model of hepatocellular carcinoma
title_fullStr ahctf1 and kras mutations combine to amplify oncogenic stress and restrict liver overgrowth in a zebrafish model of hepatocellular carcinoma
title_full_unstemmed ahctf1 and kras mutations combine to amplify oncogenic stress and restrict liver overgrowth in a zebrafish model of hepatocellular carcinoma
title_short ahctf1 and kras mutations combine to amplify oncogenic stress and restrict liver overgrowth in a zebrafish model of hepatocellular carcinoma
title_sort ahctf1 and kras mutations combine to amplify oncogenic stress and restrict liver overgrowth in a zebrafish model of hepatocellular carcinoma
topic Cancer Biology
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9897728/
https://www.ncbi.nlm.nih.gov/pubmed/36648336
http://dx.doi.org/10.7554/eLife.73407
work_keys_str_mv AT morgankimberlyj ahctf1andkrasmutationscombinetoamplifyoncogenicstressandrestrictliverovergrowthinazebrafishmodelofhepatocellularcarcinoma
AT doggettkaren ahctf1andkrasmutationscombinetoamplifyoncogenicstressandrestrictliverovergrowthinazebrafishmodelofhepatocellularcarcinoma
AT gengfansuo ahctf1andkrasmutationscombinetoamplifyoncogenicstressandrestrictliverovergrowthinazebrafishmodelofhepatocellularcarcinoma
AT mieruszynskistephen ahctf1andkrasmutationscombinetoamplifyoncogenicstressandrestrictliverovergrowthinazebrafishmodelofhepatocellularcarcinoma
AT whiteheadlachlan ahctf1andkrasmutationscombinetoamplifyoncogenicstressandrestrictliverovergrowthinazebrafishmodelofhepatocellularcarcinoma
AT smithkellya ahctf1andkrasmutationscombinetoamplifyoncogenicstressandrestrictliverovergrowthinazebrafishmodelofhepatocellularcarcinoma
AT hoganbenjaminm ahctf1andkrasmutationscombinetoamplifyoncogenicstressandrestrictliverovergrowthinazebrafishmodelofhepatocellularcarcinoma
AT simonscas ahctf1andkrasmutationscombinetoamplifyoncogenicstressandrestrictliverovergrowthinazebrafishmodelofhepatocellularcarcinoma
AT bailliegregoryj ahctf1andkrasmutationscombinetoamplifyoncogenicstressandrestrictliverovergrowthinazebrafishmodelofhepatocellularcarcinoma
AT molaniaramyar ahctf1andkrasmutationscombinetoamplifyoncogenicstressandrestrictliverovergrowthinazebrafishmodelofhepatocellularcarcinoma
AT papenfussanthonyt ahctf1andkrasmutationscombinetoamplifyoncogenicstressandrestrictliverovergrowthinazebrafishmodelofhepatocellularcarcinoma
AT hallthomase ahctf1andkrasmutationscombinetoamplifyoncogenicstressandrestrictliverovergrowthinazebrafishmodelofhepatocellularcarcinoma
AT oberelkea ahctf1andkrasmutationscombinetoamplifyoncogenicstressandrestrictliverovergrowthinazebrafishmodelofhepatocellularcarcinoma
AT stainierdidieryr ahctf1andkrasmutationscombinetoamplifyoncogenicstressandrestrictliverovergrowthinazebrafishmodelofhepatocellularcarcinoma
AT gongzhiyuan ahctf1andkrasmutationscombinetoamplifyoncogenicstressandrestrictliverovergrowthinazebrafishmodelofhepatocellularcarcinoma
AT heathjoank ahctf1andkrasmutationscombinetoamplifyoncogenicstressandrestrictliverovergrowthinazebrafishmodelofhepatocellularcarcinoma