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Mutated axon guidance gene PLXNB2 sustains growth and invasiveness of stem cells isolated from cancers of unknown primary

The genetic changes sustaining the development of cancers of unknown primary (CUP) remain elusive. The whole‐exome genomic profiling of 14 rigorously selected CUP samples did not reveal specific recurring mutation in known driver genes. However, by comparing the mutational landscape of CUPs with tha...

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Autores principales: Brundu, Serena, Napolitano, Virginia, Franzolin, Giulia, Lo Cascio, Ettore, Mastrantonio, Roberta, Sardo, Gabriele, Cascardi, Eliano, Verginelli, Federica, Sarnataro, Sergio, Gambardella, Gennaro, Pisacane, Alberto, Arcovito, Alessandro, Boccaccio, Carla, Comoglio, Paolo M, Giraudo, Enrico, Tamagnone, Luca
Formato: Online Artículo Texto
Lenguaje:English
Publicado: John Wiley and Sons Inc. 2023
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9994481/
https://www.ncbi.nlm.nih.gov/pubmed/36722641
http://dx.doi.org/10.15252/emmm.202216104
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author Brundu, Serena
Napolitano, Virginia
Franzolin, Giulia
Lo Cascio, Ettore
Mastrantonio, Roberta
Sardo, Gabriele
Cascardi, Eliano
Verginelli, Federica
Sarnataro, Sergio
Gambardella, Gennaro
Pisacane, Alberto
Arcovito, Alessandro
Boccaccio, Carla
Comoglio, Paolo M
Giraudo, Enrico
Tamagnone, Luca
author_facet Brundu, Serena
Napolitano, Virginia
Franzolin, Giulia
Lo Cascio, Ettore
Mastrantonio, Roberta
Sardo, Gabriele
Cascardi, Eliano
Verginelli, Federica
Sarnataro, Sergio
Gambardella, Gennaro
Pisacane, Alberto
Arcovito, Alessandro
Boccaccio, Carla
Comoglio, Paolo M
Giraudo, Enrico
Tamagnone, Luca
author_sort Brundu, Serena
collection PubMed
description The genetic changes sustaining the development of cancers of unknown primary (CUP) remain elusive. The whole‐exome genomic profiling of 14 rigorously selected CUP samples did not reveal specific recurring mutation in known driver genes. However, by comparing the mutational landscape of CUPs with that of most other human tumor types, it emerged a consistent enrichment of changes in genes belonging to the axon guidance KEGG pathway. In particular, G842C mutation of PlexinB2 (PlxnB2) was predicted to be activating. Indeed, knocking down the mutated, but not the wild‐type, PlxnB2 in CUP stem cells resulted in the impairment of self‐renewal and proliferation in culture, as well as tumorigenic capacity in mice. Conversely, the genetic transfer of G842C‐PlxnB2 was sufficient to promote CUP stem cell proliferation and tumorigenesis in mice. Notably, G842C‐PlxnB2 expression in CUP cells was associated with basal EGFR phosphorylation, and EGFR blockade impaired the viability of CUP cells reliant on the mutated receptor. Moreover, the mutated PlxnB2 elicited CUP cell invasiveness, blocked by EGFR inhibitor treatment. In sum, we found that a novel activating mutation of the axon guidance gene PLXNB2 sustains proliferative autonomy and confers invasive properties to stem cells isolated from cancers of unknown primary, in EGFR‐dependent manner.
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spelling pubmed-99944812023-03-09 Mutated axon guidance gene PLXNB2 sustains growth and invasiveness of stem cells isolated from cancers of unknown primary Brundu, Serena Napolitano, Virginia Franzolin, Giulia Lo Cascio, Ettore Mastrantonio, Roberta Sardo, Gabriele Cascardi, Eliano Verginelli, Federica Sarnataro, Sergio Gambardella, Gennaro Pisacane, Alberto Arcovito, Alessandro Boccaccio, Carla Comoglio, Paolo M Giraudo, Enrico Tamagnone, Luca EMBO Mol Med Articles The genetic changes sustaining the development of cancers of unknown primary (CUP) remain elusive. The whole‐exome genomic profiling of 14 rigorously selected CUP samples did not reveal specific recurring mutation in known driver genes. However, by comparing the mutational landscape of CUPs with that of most other human tumor types, it emerged a consistent enrichment of changes in genes belonging to the axon guidance KEGG pathway. In particular, G842C mutation of PlexinB2 (PlxnB2) was predicted to be activating. Indeed, knocking down the mutated, but not the wild‐type, PlxnB2 in CUP stem cells resulted in the impairment of self‐renewal and proliferation in culture, as well as tumorigenic capacity in mice. Conversely, the genetic transfer of G842C‐PlxnB2 was sufficient to promote CUP stem cell proliferation and tumorigenesis in mice. Notably, G842C‐PlxnB2 expression in CUP cells was associated with basal EGFR phosphorylation, and EGFR blockade impaired the viability of CUP cells reliant on the mutated receptor. Moreover, the mutated PlxnB2 elicited CUP cell invasiveness, blocked by EGFR inhibitor treatment. In sum, we found that a novel activating mutation of the axon guidance gene PLXNB2 sustains proliferative autonomy and confers invasive properties to stem cells isolated from cancers of unknown primary, in EGFR‐dependent manner. John Wiley and Sons Inc. 2023-02-01 /pmc/articles/PMC9994481/ /pubmed/36722641 http://dx.doi.org/10.15252/emmm.202216104 Text en © 2023 The Authors. Published under the terms of the CC BY 4.0 license. https://creativecommons.org/licenses/by/4.0/This is an open access article under the terms of the http://creativecommons.org/licenses/by/4.0/ (https://creativecommons.org/licenses/by/4.0/) License, which permits use, distribution and reproduction in any medium, provided the original work is properly cited.
spellingShingle Articles
Brundu, Serena
Napolitano, Virginia
Franzolin, Giulia
Lo Cascio, Ettore
Mastrantonio, Roberta
Sardo, Gabriele
Cascardi, Eliano
Verginelli, Federica
Sarnataro, Sergio
Gambardella, Gennaro
Pisacane, Alberto
Arcovito, Alessandro
Boccaccio, Carla
Comoglio, Paolo M
Giraudo, Enrico
Tamagnone, Luca
Mutated axon guidance gene PLXNB2 sustains growth and invasiveness of stem cells isolated from cancers of unknown primary
title Mutated axon guidance gene PLXNB2 sustains growth and invasiveness of stem cells isolated from cancers of unknown primary
title_full Mutated axon guidance gene PLXNB2 sustains growth and invasiveness of stem cells isolated from cancers of unknown primary
title_fullStr Mutated axon guidance gene PLXNB2 sustains growth and invasiveness of stem cells isolated from cancers of unknown primary
title_full_unstemmed Mutated axon guidance gene PLXNB2 sustains growth and invasiveness of stem cells isolated from cancers of unknown primary
title_short Mutated axon guidance gene PLXNB2 sustains growth and invasiveness of stem cells isolated from cancers of unknown primary
title_sort mutated axon guidance gene plxnb2 sustains growth and invasiveness of stem cells isolated from cancers of unknown primary
topic Articles
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9994481/
https://www.ncbi.nlm.nih.gov/pubmed/36722641
http://dx.doi.org/10.15252/emmm.202216104
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