Lupo, Francesca and Pezzini, Francesco and Pasini, Davide and Fiorini, Elena and Adamo, Annalisa and Veghini, Lisa and Bevere, Michele and Frusteri, Cristina and Delfino, Pietro and D'agosto, Sabrina and Andreani, Silvia and Piro, Geny and Malinova, Antonia and Wang, Tian and De Sanctis, Francesco and Lawlor, Rita Teresa and Hwang, Chang-Il and Carbone, Carmine and Amelio, Ivano and Bailey, Peter and Bronte, Vincenzo and Tuveson, David and Scarpa, Aldo and Ugel, Stefano and Corbo, Vincenzo (2024) Axon guidance cue SEMA3A promotes the aggressive phenotype of basal-like PDAC. Gut, 73 (8). pp. 1321-1335. ISSN 0017-5749
AI Summary:
SEMA3A, a stress-sensitive locus, promotes the malignant phenotype of basal-like pancreatic ductal adenocarcinoma (PDAC) through both cell-intrinsic and cell-extrinsic mechanisms.AI Topics:
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Objective: The dysregulation of the axon guidance pathway is common in pancreatic ductal adenocarcinoma (PDAC), yet our understanding of its biological relevance is limited. Here, we investigated the functional role of the axon guidance cue SEMA3A in supporting PDAC progression.
Design: We integrated bulk and single-cell transcriptomic datasets of human PDAC with in situ hybridisation analyses of patients’ tissues to evaluate SEMA3A expression in molecular subtypes of PDAC. Gain and loss of function experiments in PDAC cell lines and organoids were performed to dissect how SEMA3A contributes to define a biologically aggressive phenotype.
Results: In PDAC tissues, SEMA3A is expressed by stromal elements and selectively enriched in basal-like/squamous epithelial cells. Accordingly, expression of SEMA3A in PDAC cells is induced by both cell-intrinsic and cell-extrinsic determinants of the basal-like phenotype. In vitro, SEMA3A promotes cell migration as well as anoikis resistance. At the molecular level, these phenotypes are associated with increased focal adhesion kinase signalling through canonical SEMA3A-NRP1 axis. SEMA3A provides mouse PDAC cells with greater metastatic competence and favours intratumoural infiltration of tumour-associated macrophages and reduced density of T cells. Mechanistically, SEMA3A functions as chemoattractant for macrophages and skews their polarisation towards an M2-like phenotype. In SEMA3Ahigh tumours, depletion of macrophages results in greater intratumour infiltration by CD8+T cells and better control of the disease from antitumour treatment.
Conclusions: Here, we show that SEMA3A is a stress-sensitive locus that promotes the malignant phenotype of basal-like PDAC through both cell-intrinsic and cell-extrinsic mechanisms.
Title | Axon guidance cue SEMA3A promotes the aggressive phenotype of basal-like PDAC |
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Creators | Lupo, Francesca and Pezzini, Francesco and Pasini, Davide and Fiorini, Elena and Adamo, Annalisa and Veghini, Lisa and Bevere, Michele and Frusteri, Cristina and Delfino, Pietro and D'agosto, Sabrina and Andreani, Silvia and Piro, Geny and Malinova, Antonia and Wang, Tian and De Sanctis, Francesco and Lawlor, Rita Teresa and Hwang, Chang-Il and Carbone, Carmine and Amelio, Ivano and Bailey, Peter and Bronte, Vincenzo and Tuveson, David and Scarpa, Aldo and Ugel, Stefano and Corbo, Vincenzo |
Identification Number | 10.1136/gutjnl-2023-329807 |
Date | 11 July 2024 |
Divisions | College of Medical Veterinary and Life Sciences > School of Cancer Sciences |
Publisher | BMJ Publishing Group |
Additional Information | VC is supported by Associazione Italiana Ricerca sul Cancro (AIRC; grant no. 18178; 28801). VC is also supported by the EU (MSCA project PRECODE, grant No: 861196), the National Cancer Institute (NCI, HHSN26100008) and Fondazione Nadia Valsecchi Onlus. AS is supported by AIRC (26343); EF was supported by AIRC (25286;29692). LV was supported by AIRC (29528). PD has been supported by Fondazione Nadia Valsecchi Onlus and Fondazione Umberto Veronesi. MB is supported by AIRC fellowship for Italy (28054) and Fondazione Nadia Valsecchi Onlus. GP is supported by AIRC (MFAG AIRC; grant no. 29224). CC is supported by AIRC (MFAG AIRC Grant ’Luigi Bonatti e Anna Maria Bonatti Rocca’; grant no. 23681). This study was conducted with the support of the Ontario Institute for Cancer Research through funding provided by the Government of Ontario. This work has been supported by the DFG under the TRR353/1 “Death Decision” project A05 to IA. |
URI | https://pub.demo35.eprints-hosting.org/id/eprint/194 |
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Item Type | Article |
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Depositing User | Unnamed user with email ejo1f20@soton.ac.uk |
SWORD Depositor | Users 37347 not found. |
Date Deposited | 11 Jun 2025 16:35 |
Revision | 12 |
Last Modified | 12 Jun 2025 11:58 |
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