Skip to main navigation Skip to search Skip to main content

Tumor cell migration screen identifies SRPK1 as breast cancer metastasis determinant

  • W van Roosmalen
  • , SE Le Devedec
  • , O Golani
  • , Marcel Smid
  • , I Pulyakhina
  • , Mieke Timmermans
  • , Maxime Look
  • , D Zi
  • , C Pont
  • , M de Graauw
  • , S Naffar-Abu-Amara
  • , C Kirsanova
  • , G Rustici
  • , PAC 't Hoen
  • , John Martens
  • , John Foekens
  • , B Geiger
  • , B van de Water

Research output: Contribution to journalArticleAcademicpeer-review

114 Citations (Scopus)

Abstract

Tumor cell migration is a key process for cancer cell dissemination and metastasis that is controlled by signal-mediated cytoskeletal and cell matrix adhesion remodeling. Using a phagokinetic track assay with migratory H1299 cells, we performed an siRNA screen of almost 1,500 genes encoding kinases/phosphatases and adhesome- and migration-related proteins to identify genes that affect tumor cell migration speed and persistence. Thirty candidate genes that altered cell migration were validated in live tumor cell migration assays. Eight were associated with metastasis-free survival in breast cancer patients, with integrin beta(3)-binding protein (ITGB3BP), MAP3K8, NIMA-related kinase (NEK2), and SHC-transforming protein 1 (SHC1) being the most predictive. Examination of genes that modulate migration indicated that SRPK1, encoding the splicing factor kinase SRSF protein kinase 1, is relevant to breast cancer outcomes, as it was highly expressed in basal breast cancer. Furthermore, high SRPK1 expression correlated with poor breast cancer disease outcome and preferential metastasis to the lungs and brain. In 2 independent murine models of breast tumor metastasis, stable shRNA-based SRPK1 knockdown suppressed metastasis to distant organs, including lung, liver, and spleen, and inhibited focal adhesion reorganization. Our study provides comprehensive information on the molecular determinants of tumor cell migration and suggests that SRPK1 has potential as a drug target for limiting breast cancer metastasis.
Original languageUndefined/Unknown
Pages (from-to)1648-1664
Number of pages17
JournalJournal of Clinical Investigation
Volume125
Issue number4
DOIs
Publication statusPublished - 2015

UN SDGs

This output contributes to the following UN Sustainable Development Goals (SDGs)

  1. SDG 3 - Good Health and Well-being
    SDG 3 Good Health and Well-being

Research programs

  • EMC MM-03-86-01

Cite this