Inhibition of EphA3 Expression in Tumour Stromal Cells Suppresses Tumour Growth and Progression

Author:

Vail Mary E.1,Farnsworth Rae H.2,Hii Linda2,Allen Stacey1,Arora Sakshi1ORCID,Anderson Robin L.1ORCID,Dickins Ross A.3ORCID,Orimo Akira4,Wu Sunny Z.5ORCID,Swarbrick Alexander5,Scott Andrew M.12,Janes Peter W.12ORCID

Affiliation:

1. Olivia Newton-John Cancer Research Institute and School of Cancer Medicine, La Trobe University, Heidelberg, VIC 3084, Australia

2. Biomedicine Discovery Institute and Department of Biochemistry and Molecular Biology, Monash University, Clayton, VIC 3800, Australia

3. Australian Centre for Blood Diseases, Monash University, Melbourne, VIC 3004, Australia

4. Department of Pathology and Oncology, School of Medicine, Juntendo University, Tokyo 113-8421, Japan

5. Garvan Institute of Medical Research and School of Clinical Medicine, University of NSW, Darlinghurst, NSW 2010, Australia

Abstract

Tumour progression relies on interactions with untransformed cells in the tumour microenvironment (TME), including cancer-associated fibroblasts (CAFs), which promote blood supply, tumour progression, and immune evasion. Eph receptor tyrosine kinases are cell guidance receptors that are most active during development but re-emerge in cancer and are recognised drug targets. EphA3 is overexpressed in a wide range of tumour types, and we previously found expression particularly in stromal and vascular tissues of the TME. To investigate its role in the TME, we generated transgenic mice with inducible shRNA-mediated knockdown of EphA3 expression. EphA3 knockdown was confirmed in aortic mesenchymal stem cells (MSCs), which displayed reduced angiogenic capacity. In mice with syngeneic lung tumours, EphA3 knockdown reduced vasculature and CAF/MSC-like cells in tumours, and inhibited tumour growth, which was confirmed also in a melanoma model. Single cell RNA sequencing analysis of multiple human tumour types confirmed EphA3 expression in CAFs, including in breast cancer, where EphA3 was particularly prominent in perivascular- and myofibroblast-like CAFs. Our results thus indicate expression of the cell guidance receptor EphA3 in distinct CAF subpopulations is important in supporting tumour angiogenesis and tumour growth, highlighting its potential as a therapeutic target.

Funder

Australian National Health and Medical Research Council

Cancer Council Victoria

NHMRC Investigator

Victorian Government Operational Infrastructure Support Program

Publisher

MDPI AG

Subject

Cancer Research,Oncology

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