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

Author:

Brundu Serena1ORCID,Napolitano Virginia2ORCID,Franzolin Giulia1ORCID,Lo Cascio Ettore3ORCID,Mastrantonio Roberta2ORCID,Sardo Gabriele1,Cascardi Eliano14ORCID,Verginelli Federica1ORCID,Sarnataro Sergio5ORCID,Gambardella Gennaro56ORCID,Pisacane Alberto1,Arcovito Alessandro37ORCID,Boccaccio Carla18ORCID,Comoglio Paolo M9ORCID,Giraudo Enrico110ORCID,Tamagnone Luca27ORCID

Affiliation:

1. Candiolo Cancer Institute FPO‐IRCCS Turin Italy

2. Department of Life Sciences and Public Health Università Cattolica del Sacro Cuore Rome Italy

3. Department of Biotechnological Sciences and Intensive Care Università Cattolica del Sacro Cuore Rome Italy

4. Department of Medical Sciences University of Turin Turin Italy

5. Telethon Institute of Genetic and Medicine Pozzuoli Italy

6. Department of Electrical Engineering and Information Technology University of Naples Federico II Naples Italy

7. Fondazione Policlinico Gemelli (FPG) – IRCCS Rome Italy

8. Department of Oncology University of Turin Turin Italy

9. IFOM, FIRC Institute of Molecular Oncology Milan Italy

10. Department of Science and Drug Technology University of Turin Turin Italy

Abstract

AbstractThe 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.

Funder

Associazione Italiana per la Ricerca sul Cancro

Ministero della Salute

Ministero dell’Istruzione, dell’Università e della Ricerca

Università Cattolica del Sacro Cuore

Publisher

Springer Science and Business Media LLC

Subject

Molecular Medicine

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