Cargando…

Stepwise crosstalk between aberrant Nf1, Tp53 and Rb signalling pathways induces gliomagenesis in zebrafish

The molecular pathogenesis of glioblastoma indicates that RTK/Ras/PI3K, RB and TP53 pathways are critical for human gliomagenesis. Here, several transgenic zebrafish lines with single or multiple deletions of nf1, tp53 and rb1 in astrocytes, were established to genetically induce gliomagenesis in ze...

Descripción completa

Detalles Bibliográficos
Autores principales: Luo, Juanjuan, Liu, Pei, Lu, Chunjiao, Bian, Wanping, Su, Dongsheng, Zhu, Chenchen, Xie, Shaolin, Pan, Yihang, Li, Ningning, Cui, Wei, Pei, De-Sheng, Yang, Xiaojun
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Oxford University Press 2020
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7940501/
https://www.ncbi.nlm.nih.gov/pubmed/33279959
http://dx.doi.org/10.1093/brain/awaa404
_version_ 1783661964062359552
author Luo, Juanjuan
Liu, Pei
Lu, Chunjiao
Bian, Wanping
Su, Dongsheng
Zhu, Chenchen
Xie, Shaolin
Pan, Yihang
Li, Ningning
Cui, Wei
Pei, De-Sheng
Yang, Xiaojun
author_facet Luo, Juanjuan
Liu, Pei
Lu, Chunjiao
Bian, Wanping
Su, Dongsheng
Zhu, Chenchen
Xie, Shaolin
Pan, Yihang
Li, Ningning
Cui, Wei
Pei, De-Sheng
Yang, Xiaojun
author_sort Luo, Juanjuan
collection PubMed
description The molecular pathogenesis of glioblastoma indicates that RTK/Ras/PI3K, RB and TP53 pathways are critical for human gliomagenesis. Here, several transgenic zebrafish lines with single or multiple deletions of nf1, tp53 and rb1 in astrocytes, were established to genetically induce gliomagenesis in zebrafish. In the mutant with a single deletion, we found only the nf1 mutation low-efficiently induced tumour incidence, suggesting that the Nf1 pathway is critical for the initiation of gliomagenesis in zebrafish. Combination of mutations, nf1;tp53 and rb1;tp53 combined knockout fish, showed much higher tumour incidences, high-grade histology, increased invasiveness, and shortened survival time. Further bioinformatics analyses demonstrated the alterations in RTK/Ras/PI3K, cell cycle, and focal adhesion pathways, induced by abrogated nf1, tp53, or rb1, were probably the critical stepwise biological events for the initiation and development of gliomagenesis in zebrafish. Gene expression profiling and histological analyses showed the tumours derived from zebrafish have significant similarities to the subgroups of human gliomas. Furthermore, temozolomide treatment effectively suppressed gliomagenesis in these glioma zebrafish models, and the histological responses in temozolomide-treated zebrafish were similar to those observed in clinically treated glioma patients. Thus, our findings will offer a potential tool for genetically investigating gliomagenesis and screening potential targeted anti-tumour compounds for glioma treatment.
format Online
Article
Text
id pubmed-7940501
institution National Center for Biotechnology Information
language English
publishDate 2020
publisher Oxford University Press
record_format MEDLINE/PubMed
spelling pubmed-79405012021-03-12 Stepwise crosstalk between aberrant Nf1, Tp53 and Rb signalling pathways induces gliomagenesis in zebrafish Luo, Juanjuan Liu, Pei Lu, Chunjiao Bian, Wanping Su, Dongsheng Zhu, Chenchen Xie, Shaolin Pan, Yihang Li, Ningning Cui, Wei Pei, De-Sheng Yang, Xiaojun Brain Original Articles The molecular pathogenesis of glioblastoma indicates that RTK/Ras/PI3K, RB and TP53 pathways are critical for human gliomagenesis. Here, several transgenic zebrafish lines with single or multiple deletions of nf1, tp53 and rb1 in astrocytes, were established to genetically induce gliomagenesis in zebrafish. In the mutant with a single deletion, we found only the nf1 mutation low-efficiently induced tumour incidence, suggesting that the Nf1 pathway is critical for the initiation of gliomagenesis in zebrafish. Combination of mutations, nf1;tp53 and rb1;tp53 combined knockout fish, showed much higher tumour incidences, high-grade histology, increased invasiveness, and shortened survival time. Further bioinformatics analyses demonstrated the alterations in RTK/Ras/PI3K, cell cycle, and focal adhesion pathways, induced by abrogated nf1, tp53, or rb1, were probably the critical stepwise biological events for the initiation and development of gliomagenesis in zebrafish. Gene expression profiling and histological analyses showed the tumours derived from zebrafish have significant similarities to the subgroups of human gliomas. Furthermore, temozolomide treatment effectively suppressed gliomagenesis in these glioma zebrafish models, and the histological responses in temozolomide-treated zebrafish were similar to those observed in clinically treated glioma patients. Thus, our findings will offer a potential tool for genetically investigating gliomagenesis and screening potential targeted anti-tumour compounds for glioma treatment. Oxford University Press 2020-12-05 /pmc/articles/PMC7940501/ /pubmed/33279959 http://dx.doi.org/10.1093/brain/awaa404 Text en © The Author(s) (2020). Published by Oxford University Press on behalf of the Guarantors of Brain. http://creativecommons.org/licenses/by-nc/4.0/ This is an Open Access article distributed under the terms of the Creative Commons Attribution Non-Commercial License (http://creativecommons.org/licenses/by-nc/4.0/), which permits non-commercial re-use, distribution, and reproduction in any medium, provided the original work is properly cited. For commercial re-use, please contact journals.permissions@oup.com
spellingShingle Original Articles
Luo, Juanjuan
Liu, Pei
Lu, Chunjiao
Bian, Wanping
Su, Dongsheng
Zhu, Chenchen
Xie, Shaolin
Pan, Yihang
Li, Ningning
Cui, Wei
Pei, De-Sheng
Yang, Xiaojun
Stepwise crosstalk between aberrant Nf1, Tp53 and Rb signalling pathways induces gliomagenesis in zebrafish
title Stepwise crosstalk between aberrant Nf1, Tp53 and Rb signalling pathways induces gliomagenesis in zebrafish
title_full Stepwise crosstalk between aberrant Nf1, Tp53 and Rb signalling pathways induces gliomagenesis in zebrafish
title_fullStr Stepwise crosstalk between aberrant Nf1, Tp53 and Rb signalling pathways induces gliomagenesis in zebrafish
title_full_unstemmed Stepwise crosstalk between aberrant Nf1, Tp53 and Rb signalling pathways induces gliomagenesis in zebrafish
title_short Stepwise crosstalk between aberrant Nf1, Tp53 and Rb signalling pathways induces gliomagenesis in zebrafish
title_sort stepwise crosstalk between aberrant nf1, tp53 and rb signalling pathways induces gliomagenesis in zebrafish
topic Original Articles
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7940501/
https://www.ncbi.nlm.nih.gov/pubmed/33279959
http://dx.doi.org/10.1093/brain/awaa404
work_keys_str_mv AT luojuanjuan stepwisecrosstalkbetweenaberrantnf1tp53andrbsignallingpathwaysinducesgliomagenesisinzebrafish
AT liupei stepwisecrosstalkbetweenaberrantnf1tp53andrbsignallingpathwaysinducesgliomagenesisinzebrafish
AT luchunjiao stepwisecrosstalkbetweenaberrantnf1tp53andrbsignallingpathwaysinducesgliomagenesisinzebrafish
AT bianwanping stepwisecrosstalkbetweenaberrantnf1tp53andrbsignallingpathwaysinducesgliomagenesisinzebrafish
AT sudongsheng stepwisecrosstalkbetweenaberrantnf1tp53andrbsignallingpathwaysinducesgliomagenesisinzebrafish
AT zhuchenchen stepwisecrosstalkbetweenaberrantnf1tp53andrbsignallingpathwaysinducesgliomagenesisinzebrafish
AT xieshaolin stepwisecrosstalkbetweenaberrantnf1tp53andrbsignallingpathwaysinducesgliomagenesisinzebrafish
AT panyihang stepwisecrosstalkbetweenaberrantnf1tp53andrbsignallingpathwaysinducesgliomagenesisinzebrafish
AT liningning stepwisecrosstalkbetweenaberrantnf1tp53andrbsignallingpathwaysinducesgliomagenesisinzebrafish
AT cuiwei stepwisecrosstalkbetweenaberrantnf1tp53andrbsignallingpathwaysinducesgliomagenesisinzebrafish
AT peidesheng stepwisecrosstalkbetweenaberrantnf1tp53andrbsignallingpathwaysinducesgliomagenesisinzebrafish
AT yangxiaojun stepwisecrosstalkbetweenaberrantnf1tp53andrbsignallingpathwaysinducesgliomagenesisinzebrafish