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Role of c-Met/β1 integrin complex in the metastatic cascade in breast cancer
Darryl Lau, Harsh Wadhwa, Sweta Sudhir, Alexander Chih-Chieh Chang, Saket Jain, Ankush Chandra, Alan T. Nguyen, Jordan M. Spatz, Ananya Pappu, Sumedh S. Shah, Justin Cheng, Michael M. Safaee, Garima Yagnik, Arman Jahangiri, Manish K. Aghi
Darryl Lau, Harsh Wadhwa, Sweta Sudhir, Alexander Chih-Chieh Chang, Saket Jain, Ankush Chandra, Alan T. Nguyen, Jordan M. Spatz, Ananya Pappu, Sumedh S. Shah, Justin Cheng, Michael M. Safaee, Garima Yagnik, Arman Jahangiri, Manish K. Aghi
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Research Article Oncology

Role of c-Met/β1 integrin complex in the metastatic cascade in breast cancer

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Abstract

Metastases cause 90% of human cancer deaths. The metastatic cascade involves local invasion, intravasation, extravasation, metastatic site colonization, and proliferation. Although individual mediators of these processes have been investigated, interactions between these mediators remain less well defined. We previously identified a complex between receptor tyrosine kinase c-Met and β1 integrin in metastases. Using cell culture and in vivo assays, we found that c-Met/β1 complex induction promoted intravasation and vessel wall adhesion in triple-negative breast cancer cells, but did not increase extravasation. These effects may have been driven by the ability of the c-Met/β1 complex to increase mesenchymal and stem cell characteristics. Multiplex transcriptomic analysis revealed upregulated Wnt and hedgehog pathways after c-Met/β1 complex induction. A β1 integrin point mutation that prevented binding to c-Met reduced intravasation. OS2966, a therapeutic antibody disrupting c-Met/β1 binding, decreased breast cancer cell invasion and mesenchymal gene expression. Bone-seeking breast cancer cells exhibited higher levels of c-Met/β1 complex than parental controls and preferentially adhered to tissue-specific matrix. Patient bone metastases demonstrated higher c-Met/β1 complex than brain metastases. Thus, the c-Met/β1 complex drove intravasation of triple-negative breast cancer cells and preferential affinity for bone-specific matrix. Pharmacological targeting of the complex may have prevented metastases, particularly osseous metastases.

Authors

Darryl Lau, Harsh Wadhwa, Sweta Sudhir, Alexander Chih-Chieh Chang, Saket Jain, Ankush Chandra, Alan T. Nguyen, Jordan M. Spatz, Ananya Pappu, Sumedh S. Shah, Justin Cheng, Michael M. Safaee, Garima Yagnik, Arman Jahangiri, Manish K. Aghi

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Figure 1

c-Met/β1 complex formation activates pathways implicated in metastases in breast cancer cells.

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c-Met/β1 complex formation activates pathways implicated in metastases i...
Treatment of MDA-MB-231-iDimerize-c-Met-β1 cells with AP21967 (A/C ligand)–induced c-Met/β1 complex formation, leading to the upregulation of many of the 770 genes from 13 cancer-associated canonical pathways in the NanoString nCounter platform (n = 3/group), as evidenced by (A) volcano plot revealing the most upregulated genes with the largest fold change in the upper right; (B) top 15 hits based on P values; and (C) elevated expression of genes in the stem cell, TGF-β, mTOR, and Wnt signaling pathways (n = 3/group). (D) Multiplex transcriptomic analysis revealed that AP21967 upregulated the expression of genes in several downstream cancer progression pathways in MDA-MB-231-iDimerize-c-Met-β1, including increased HIF-1 signaling pathway and a variety of metabolic pathways (n = 3/group). (E) Flow cytometry revealed that AP21967 doubled the CD44+CD24– stem cell fraction of MDA-MB-231-iDimerize-c-Met-β1 cells (n = 3/group; scatter dot plot with horizontal line at mean and vertical line representing SD; unpaired t test; P < 0.001). To determine whether c-Met/β1 complex formation enriched the expression of mesenchymal transcription factors, qRT-PCR was performed for 6 mesenchymal transcription factors (Twist, Snail, FOXC1, FOXC2, Slug, ZEB1, and ZEB2) in (F) MDA-MB-231-iDimerize-c-Met-β1 cells and (G) MCF7-iDimerize-c-Met-β1 cells treated with or without 0.5 nM AP21967 (A/C ligand) for 24 hours (n = 3/group; scatter dot plot with horizontal line at mean and vertical line representing SD; unpaired t test). Note that ZEB2 was not detectable in MCF7-iDimerize-c-Met-β1 cells. *P < 0.05; **P < 0.01; ***P < 0.001.

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