Cargando…

Complex Interplay of Genes Underlies Invasiveness in Fibrosarcoma Progression Model

Sarcomas are a heterogeneous group of mesenchymal tumours, with a great variability in their clinical behaviour. While our knowledge of sarcoma initiation has advanced rapidly in recent years, relatively little is known about mechanisms of sarcoma progression. JUN-murine fibrosarcoma progression ser...

Descripción completa

Detalles Bibliográficos
Autores principales: Kripnerová, Michaela, Parmar, Hamendra Singh, Šána, Jiří, Kopková, Alena, Radová, Lenka, Sopper, Sieghart, Biernacki, Krzysztof, Jedlička, Jan, Kohoutová, Michaela, Kuncová, Jitka, Peychl, Jan, Rudolf, Emil, Červinka, Miroslav, Houdek, Zbyněk, Dvořák, Pavel, Houfková, Kateřina, Pešta, Martin, Tůma, Zdeněk, Dolejšová, Martina, Tichánek, Filip, Babuška, Václav, Leba, Martin, Slabý, Ondřej, Hatina, Jiří
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2021
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8197499/
https://www.ncbi.nlm.nih.gov/pubmed/34070472
http://dx.doi.org/10.3390/jcm10112297
_version_ 1783706931398967296
author Kripnerová, Michaela
Parmar, Hamendra Singh
Šána, Jiří
Kopková, Alena
Radová, Lenka
Sopper, Sieghart
Biernacki, Krzysztof
Jedlička, Jan
Kohoutová, Michaela
Kuncová, Jitka
Peychl, Jan
Rudolf, Emil
Červinka, Miroslav
Houdek, Zbyněk
Dvořák, Pavel
Houfková, Kateřina
Pešta, Martin
Tůma, Zdeněk
Dolejšová, Martina
Tichánek, Filip
Babuška, Václav
Leba, Martin
Slabý, Ondřej
Hatina, Jiří
author_facet Kripnerová, Michaela
Parmar, Hamendra Singh
Šána, Jiří
Kopková, Alena
Radová, Lenka
Sopper, Sieghart
Biernacki, Krzysztof
Jedlička, Jan
Kohoutová, Michaela
Kuncová, Jitka
Peychl, Jan
Rudolf, Emil
Červinka, Miroslav
Houdek, Zbyněk
Dvořák, Pavel
Houfková, Kateřina
Pešta, Martin
Tůma, Zdeněk
Dolejšová, Martina
Tichánek, Filip
Babuška, Václav
Leba, Martin
Slabý, Ondřej
Hatina, Jiří
author_sort Kripnerová, Michaela
collection PubMed
description Sarcomas are a heterogeneous group of mesenchymal tumours, with a great variability in their clinical behaviour. While our knowledge of sarcoma initiation has advanced rapidly in recent years, relatively little is known about mechanisms of sarcoma progression. JUN-murine fibrosarcoma progression series consists of four sarcoma cell lines, JUN-1, JUN-2, JUN-2fos-3, and JUN-3. JUN-1 and -2 were established from a single tumour initiated in a H2K/v-jun transgenic mouse, JUN-3 originates from a different tumour in the same animal, and JUN-2fos-3 results from a targeted in vitro transformation of the JUN-2 cell line. The JUN-1, -2, and -3 cell lines represent a linear progression from the least transformed JUN-2 to the most transformed JUN-3, with regard to all the transformation characteristics studied, while the JUN-2fos-3 cell line exhibits a unique transformation mode, with little deregulation of cell growth and proliferation, but pronounced motility and invasiveness. The invasive sarcoma sublines JUN-2fos-3 and JUN-3 show complex metabolic profiles, with activation of both mitochondrial oxidative phosphorylation and glycolysis and a significant increase in spared respiratory capacity. The specific transcriptomic profile of invasive sublines features very complex biological relationships across the identified genes and proteins, with accentuated autocrine control of motility and angiogenesis. Pharmacologic inhibition of one of the autocrine motility factors identified, Ccl8, significantly diminished both motility and invasiveness of the highly transformed fibrosarcoma cell. This progression series could be greatly valuable for deciphering crucial aspects of sarcoma progression and defining new prognostic markers and potential therapeutic targets.
format Online
Article
Text
id pubmed-8197499
institution National Center for Biotechnology Information
language English
publishDate 2021
publisher MDPI
record_format MEDLINE/PubMed
spelling pubmed-81974992021-06-13 Complex Interplay of Genes Underlies Invasiveness in Fibrosarcoma Progression Model Kripnerová, Michaela Parmar, Hamendra Singh Šána, Jiří Kopková, Alena Radová, Lenka Sopper, Sieghart Biernacki, Krzysztof Jedlička, Jan Kohoutová, Michaela Kuncová, Jitka Peychl, Jan Rudolf, Emil Červinka, Miroslav Houdek, Zbyněk Dvořák, Pavel Houfková, Kateřina Pešta, Martin Tůma, Zdeněk Dolejšová, Martina Tichánek, Filip Babuška, Václav Leba, Martin Slabý, Ondřej Hatina, Jiří J Clin Med Article Sarcomas are a heterogeneous group of mesenchymal tumours, with a great variability in their clinical behaviour. While our knowledge of sarcoma initiation has advanced rapidly in recent years, relatively little is known about mechanisms of sarcoma progression. JUN-murine fibrosarcoma progression series consists of four sarcoma cell lines, JUN-1, JUN-2, JUN-2fos-3, and JUN-3. JUN-1 and -2 were established from a single tumour initiated in a H2K/v-jun transgenic mouse, JUN-3 originates from a different tumour in the same animal, and JUN-2fos-3 results from a targeted in vitro transformation of the JUN-2 cell line. The JUN-1, -2, and -3 cell lines represent a linear progression from the least transformed JUN-2 to the most transformed JUN-3, with regard to all the transformation characteristics studied, while the JUN-2fos-3 cell line exhibits a unique transformation mode, with little deregulation of cell growth and proliferation, but pronounced motility and invasiveness. The invasive sarcoma sublines JUN-2fos-3 and JUN-3 show complex metabolic profiles, with activation of both mitochondrial oxidative phosphorylation and glycolysis and a significant increase in spared respiratory capacity. The specific transcriptomic profile of invasive sublines features very complex biological relationships across the identified genes and proteins, with accentuated autocrine control of motility and angiogenesis. Pharmacologic inhibition of one of the autocrine motility factors identified, Ccl8, significantly diminished both motility and invasiveness of the highly transformed fibrosarcoma cell. This progression series could be greatly valuable for deciphering crucial aspects of sarcoma progression and defining new prognostic markers and potential therapeutic targets. MDPI 2021-05-25 /pmc/articles/PMC8197499/ /pubmed/34070472 http://dx.doi.org/10.3390/jcm10112297 Text en © 2021 by the authors. https://creativecommons.org/licenses/by/4.0/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 (https://creativecommons.org/licenses/by/4.0/).
spellingShingle Article
Kripnerová, Michaela
Parmar, Hamendra Singh
Šána, Jiří
Kopková, Alena
Radová, Lenka
Sopper, Sieghart
Biernacki, Krzysztof
Jedlička, Jan
Kohoutová, Michaela
Kuncová, Jitka
Peychl, Jan
Rudolf, Emil
Červinka, Miroslav
Houdek, Zbyněk
Dvořák, Pavel
Houfková, Kateřina
Pešta, Martin
Tůma, Zdeněk
Dolejšová, Martina
Tichánek, Filip
Babuška, Václav
Leba, Martin
Slabý, Ondřej
Hatina, Jiří
Complex Interplay of Genes Underlies Invasiveness in Fibrosarcoma Progression Model
title Complex Interplay of Genes Underlies Invasiveness in Fibrosarcoma Progression Model
title_full Complex Interplay of Genes Underlies Invasiveness in Fibrosarcoma Progression Model
title_fullStr Complex Interplay of Genes Underlies Invasiveness in Fibrosarcoma Progression Model
title_full_unstemmed Complex Interplay of Genes Underlies Invasiveness in Fibrosarcoma Progression Model
title_short Complex Interplay of Genes Underlies Invasiveness in Fibrosarcoma Progression Model
title_sort complex interplay of genes underlies invasiveness in fibrosarcoma progression model
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8197499/
https://www.ncbi.nlm.nih.gov/pubmed/34070472
http://dx.doi.org/10.3390/jcm10112297
work_keys_str_mv AT kripnerovamichaela complexinterplayofgenesunderliesinvasivenessinfibrosarcomaprogressionmodel
AT parmarhamendrasingh complexinterplayofgenesunderliesinvasivenessinfibrosarcomaprogressionmodel
AT sanajiri complexinterplayofgenesunderliesinvasivenessinfibrosarcomaprogressionmodel
AT kopkovaalena complexinterplayofgenesunderliesinvasivenessinfibrosarcomaprogressionmodel
AT radovalenka complexinterplayofgenesunderliesinvasivenessinfibrosarcomaprogressionmodel
AT soppersieghart complexinterplayofgenesunderliesinvasivenessinfibrosarcomaprogressionmodel
AT biernackikrzysztof complexinterplayofgenesunderliesinvasivenessinfibrosarcomaprogressionmodel
AT jedlickajan complexinterplayofgenesunderliesinvasivenessinfibrosarcomaprogressionmodel
AT kohoutovamichaela complexinterplayofgenesunderliesinvasivenessinfibrosarcomaprogressionmodel
AT kuncovajitka complexinterplayofgenesunderliesinvasivenessinfibrosarcomaprogressionmodel
AT peychljan complexinterplayofgenesunderliesinvasivenessinfibrosarcomaprogressionmodel
AT rudolfemil complexinterplayofgenesunderliesinvasivenessinfibrosarcomaprogressionmodel
AT cervinkamiroslav complexinterplayofgenesunderliesinvasivenessinfibrosarcomaprogressionmodel
AT houdekzbynek complexinterplayofgenesunderliesinvasivenessinfibrosarcomaprogressionmodel
AT dvorakpavel complexinterplayofgenesunderliesinvasivenessinfibrosarcomaprogressionmodel
AT houfkovakaterina complexinterplayofgenesunderliesinvasivenessinfibrosarcomaprogressionmodel
AT pestamartin complexinterplayofgenesunderliesinvasivenessinfibrosarcomaprogressionmodel
AT tumazdenek complexinterplayofgenesunderliesinvasivenessinfibrosarcomaprogressionmodel
AT dolejsovamartina complexinterplayofgenesunderliesinvasivenessinfibrosarcomaprogressionmodel
AT tichanekfilip complexinterplayofgenesunderliesinvasivenessinfibrosarcomaprogressionmodel
AT babuskavaclav complexinterplayofgenesunderliesinvasivenessinfibrosarcomaprogressionmodel
AT lebamartin complexinterplayofgenesunderliesinvasivenessinfibrosarcomaprogressionmodel
AT slabyondrej complexinterplayofgenesunderliesinvasivenessinfibrosarcomaprogressionmodel
AT hatinajiri complexinterplayofgenesunderliesinvasivenessinfibrosarcomaprogressionmodel