Expression and Y435-phosphorylation of Abelson interactor 1 (Abi1) promotes tumour cell adhesion, extracellular matrix degradation and invasion by colorectal carcinoma cells
Expression and Y435-phosphorylation of Abelson interactor 1 (Abi1) promotes tumour cell adhesion, extracellular matrix degradation and invasion by colorectal carcinoma cells
The Abelson tyrosine kinase (c-Abl) inhibitor STI571 (Glivec®) has been shown to effectively inhibit colorectal cancer cell migration and invasion. The c-Abl substrate abelson interactor 1 (Abi1) is a key regulator of actin reorganization and upregulated in colorectal carcinoma. The specific role of Abi1 in relation to extracellular matrix degradation and effects of targeting Abi1 phosphorylation have not yet been examined. Here, we investigated the role of Abi1 in relation to invasive properties in colorectal cancer.In 56 primary human colorectal carcinoma samples, we found overexpression of Abi1 in 39% at the invasive edge of the tumour, associated with an infiltrative phenotype and high-grade tumour cell budding (p = 0.001). To explore the role of Abi1 in vitro, we employed the Abi1 expressing and KRAS-mutated CHD1 model and performed matrix degradation assays that showed Abi1 localization at specific sites of matrix degradation. Moreover, quantification of matrix dissolution demonstrated suppression after RNAi knockdown of Abi1 by 95% (p = 0.001). Importantly, treatment with STI571 did abolish Abi1 Y435-phosphorylation, suppressed the matrix dissolution, decreased fibronectin attachment, and suppressed cell invasion through reconstituted extracellular matrix.Our data indicate that phosphorylated Abi1 contributes to the invasive properties of colorectal cancer.
- Ludwig-Maximilians-Universität München Germany
- Institut für Radiobiologie der Bundeswehr Germany
- University Hospital Ulm Germany
- Bundeswehrkrankenhaus Germany
- Pathologisches Institut Germany
Male, Cancer Research, Piperazines, Cell Movement, Cell Adhesion, Humans, Phosphorylation, Adaptor Proteins, Signal Transducing, Aged, Aged, 80 and over, Research, DNA Helicases, Middle Aged, Actins, Extracellular Matrix, DNA-Binding Proteins, Gene Expression Regulation, Neoplastic, Cytoskeletal Proteins, Oncology, Benzamides, Imatinib Mesylate, Molecular Medicine, Female, Colorectal Neoplasms
Male, Cancer Research, Piperazines, Cell Movement, Cell Adhesion, Humans, Phosphorylation, Adaptor Proteins, Signal Transducing, Aged, Aged, 80 and over, Research, DNA Helicases, Middle Aged, Actins, Extracellular Matrix, DNA-Binding Proteins, Gene Expression Regulation, Neoplastic, Cytoskeletal Proteins, Oncology, Benzamides, Imatinib Mesylate, Molecular Medicine, Female, Colorectal Neoplasms
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