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Non-canonical EphA2 activation underpins PTEN-mediated metastatic migration and poor clinical outcome in prostate cancer.
Sachdeva, Ashwin; Hart, Claire A; Kim, Kyungmin; Tawadros, Thomas; Oliveira, Pedro; Shanks, Jonathan; Brown, Mick; Clarke, Noel.
Afiliación
  • Sachdeva A; Genito Urinary Cancer Research Group, Division of Cancer Sciences, Faculty of Biology, Medicine & Health, The University of Manchester and FASTMAN, Prostate Cancer UK & Movember Centre of Excellence, Manchester, UK.
  • Hart CA; Department of Surgery, The Christie NHS Foundation Trust, Manchester, UK.
  • Kim K; Genito Urinary Cancer Research Group, Division of Cancer Sciences, Faculty of Biology, Medicine & Health, The University of Manchester and FASTMAN, Prostate Cancer UK & Movember Centre of Excellence, Manchester, UK.
  • Tawadros T; Genito Urinary Cancer Research Group, Division of Cancer Sciences, Faculty of Biology, Medicine & Health, The University of Manchester and FASTMAN, Prostate Cancer UK & Movember Centre of Excellence, Manchester, UK.
  • Oliveira P; Genito Urinary Cancer Research Group, Division of Cancer Sciences, Faculty of Biology, Medicine & Health, The University of Manchester and FASTMAN, Prostate Cancer UK & Movember Centre of Excellence, Manchester, UK.
  • Shanks J; Department of Pathology, The Christie NHS Foundation Trust, Manchester, UK.
  • Brown M; Department of Pathology, The Christie NHS Foundation Trust, Manchester, UK.
  • Clarke N; Genito Urinary Cancer Research Group, Division of Cancer Sciences, Faculty of Biology, Medicine & Health, The University of Manchester and FASTMAN, Prostate Cancer UK & Movember Centre of Excellence, Manchester, UK. michael.d.brown@manchester.ac.uk.
Br J Cancer ; 127(7): 1254-1262, 2022 10.
Article en En | MEDLINE | ID: mdl-35869144
ABSTRACT

BACKGROUND:

The key process of mesenchymal to amoeboid transition (MAT), which enables prostate cancer (PCa) transendothelial migration and subsequent development of metastases in red bone marrow stroma, is driven by phosphorylation of EphA2S897 by pAkt, which is induced by the omega-6 polyunsaturated fatty acid arachidonic acid. Here we investigate the influence of EphA2 signalling in PCa progression and long-term survival.

METHODS:

The mechanisms underpinning metastatic biopotential of altered EphA2 signalling in relation to PTEN status were assessed in vitro using canonical (EphA2D739N) and non-canonical (EphA2S897G) PC3-M mutants, interrogation of publicly available PTEN-stratified databases and clinical validation using a PCa TMA (n = 177) with long-term follow-up data. Spatial heterogeneity of EphA2 was assessed using a radical prostatectomy cohort (n = 67).

RESULTS:

Non-canonical EphA2 signalling via pEphA2S897 is required for PCa transendothelial invasion of bone marrow endothelium. High expression of EphA2 or pEphA2S897 in a PTENlow background is associated with poor overall survival. Expression of EphA2, pEphA2S897 and the associated MAT marker pMLC2 are spatially regulated with the highest levels found within lesion areas within 500 µm of the prostate margin.

CONCLUSION:

EphA2 MAT-related signalling confers transendothelial invasion. This is associated with a substantially worse prognosis in PTEN-deficient PCa.
Asunto(s)

Texto completo: 1 Colección: 01-internacional Base de datos: MEDLINE Asunto principal: Neoplasias de la Próstata / Receptor EphA2 Límite: Humans / Male Idioma: En Revista: Br J Cancer Año: 2022 Tipo del documento: Article País de afiliación: Reino Unido

Texto completo: 1 Colección: 01-internacional Base de datos: MEDLINE Asunto principal: Neoplasias de la Próstata / Receptor EphA2 Límite: Humans / Male Idioma: En Revista: Br J Cancer Año: 2022 Tipo del documento: Article País de afiliación: Reino Unido
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