SKOR1 mediates FER kinase-dependent invasive growth of breast cancer cells

Author:

Sluimer Lilian M.1,Bullock Esme2,Rätze Max A. K.1,Enserink Lotte1,Overbeeke Celine1ORCID,Hornsveld Marten3,Brunton Valerie G.2ORCID,Derksen Patrick W. B.1ORCID,Tavares Sandra145ORCID

Affiliation:

1. University Medical Center Utrecht 1 Department of Pathology , , Heidelberglaan 100, 3584 CX Utrecht , The Netherlands

2. Edinburgh Cancer Research UK Centre, University of Edinburgh 2 , Crewe Road South, EH4 2XR Edinburgh , UK

3. Cancer Genomics Centre Netherlands and Centre for Biomedical Genetics, Leiden University Medical Center 3 Department of Molecular Cell Biology , , Einthovenweg 20, 2333 ZC Leiden , The Netherlands

4. i3S - Instituto de Investigação e Inovação em Saúde, Universidade do Porto 4 , Rua Alfredo Allen 208, 4200-135 Porto , Portugal

5. IPATIMUP - Instituto de Patologia e Imunologia Molecular da Universidade do Porto 5 , Rua Júlio Amaral de Carvalho 45, 4200-135 Porto , Portugal

Abstract

ABSTRACT High expression of the non-receptor tyrosine kinase FER is an independent prognostic factor that correlates with poor survival in breast cancer patients. To investigate whether the kinase activity of FER is essential for its oncogenic properties, we developed an ATP analogue-sensitive knock-in allele (FERASKI). Specific FER kinase inhibition in MDA-MB-231 cells reduces migration and invasion, as well as metastasis when xenografted into a mouse model of breast cancer. Using the FERASKI system, we identified Ski family transcriptional corepressor 1 (SKOR1) as a direct FER kinase substrate. SKOR1 loss phenocopies FER inhibition, leading to impaired proliferation, migration and invasion, and inhibition of breast cancer growth and metastasis formation in mice. We show that SKOR1 Y234, a candidate FER phosphorylation site, is essential for FER-dependent tumor progression. Finally, our work suggests that the SKOR1 Y234 residue promotes Smad2/3 signaling through SKOR1 binding to Smad3. Our study thus identifies SKOR1 as a mediator of FER-dependent progression of high-risk breast cancers.

Funder

KWF Kankerbestrijding

Nederlandse Organisatie voor Wetenschappelijk Onderzoek

Horizon 2020

Publisher

The Company of Biologists

Subject

Cell Biology

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