Liprin‐α1 contributes to oncogenic MAPK signaling by counteracting ERK activity

Author:

Pehkonen Henna1ORCID,Filippou Artemis1ORCID,Väänänen Juho1,Lindfors Iida1,Vänttinen Mira1,Ianevski Philipp2,Mäkelä Anne1,Munne Pauliina3,Klefström Juha34ORCID,Toppila‐Salmi Sanna56,Grénman Reidar7,Hagström Jaana89,Mäkitie Antti A.410,Karhemo Piia‐Riitta14,Monni Outi1411ORCID

Affiliation:

1. Applied Tumor Genomics Research Program, Faculty of Medicine University of Helsinki Finland

2. Institute for Molecular Medicine Finland (FIMM) University of Helsinki Finland

3. Finnish Cancer Institute, FICAN South Helsinki University Hospital & Translational Cancer Medicine, Medical Faculty University of Helsinki Finland

4. iCAN Digital Precision Cancer Medicine Flagship Helsinki Finland

5. Skin and Allergy Hospital Helsinki University Hospital and University of Helsinki Finland

6. Department of Otorhinolaryngology, Kuopio University Hospital and School of Medicine, Institute of Clinical Medicine University of Eastern Finland Kuopio Finland

7. Department of Otorhinolaryngology‐Head and Neck Surgery University of Turku and Turku University Hospital Finland

8. Department of Pathology University of Helsinki and Helsinki University Hospital Finland

9. Institute of Dentistry University of Turku Finland

10. Department of Otorhinolaryngology‐Head and Neck Surgery, Research Program in Systems Oncology University of Helsinki and Helsinki University Hospital Finland

11. Department of Oncology, Faculty of Medicine University of Helsinki Finland

Abstract

PTPRF interacting protein alpha 1 (PPFIA1) encodes for liprin‐α1, a member of the leukocyte common antigen–related protein tyrosine phosphatase (LAR‐RPTPs)‐interacting protein family. Liprin‐α1 localizes to adhesive and invasive structures in the periphery of cancer cells, where it modulates migration and invasion in head and neck squamous cell carcinoma (HNSCC) and breast cancer. To study the possible role of liprin‐α1 in anticancer drug responses, we screened a library of oncology compounds in cell lines with high endogenous PPFIA1 expression. The compounds with the highest differential responses between high PPFIA1‐expressing and silenced cells across cell lines were inhibitors targeting mitogen‐activated protein kinase kinase (MEK)/extracellular signal‐regulated kinases (ERK) signaling. KRAS proto‐oncogene, GTPase (KRAS)‐mutated MDA‐MB‐231 cells were more resistant to trametinib upon PPFIA1 knockdown compared with control cells. In contrast, liprin‐α1‐depleted HNSCC cells with low RAS activity showed a context‐dependent response to MEK/ERK inhibitors. Importantly, we showed that liprin‐α1 depletion leads to increased p‐ERK1/2 levels in all our studied cell lines independent of KRAS mutational status, suggesting a role of liprin‐α1 in the regulation of MAPK oncogenic signaling. Furthermore, liprin‐α1 depletion led to more pronounced redistribution of RAS proteins to the cell membrane. Our data suggest that liprin‐α1 is an important contributor to oncogenic RAS/MAPK signaling, and the status of liprin‐α1 may assist in predicting drug responses in cancer cells in a context‐dependent manner.

Funder

Ida Montinin Säätiö

Jane ja Aatos Erkon Säätiö

Syöpäsäätiö

Publisher

Wiley

Subject

Cancer Research,Genetics,Molecular Medicine,General Medicine,Oncology

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