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Osteosarcoma uses host-derived growth factors to drive ERK phosphorylation and MCL1 expression to survive in the metastatic environment

GSE234614 Homo sapiens; Mus musculus Expression profiling by high throughput sequencing 5 samples Submitted 2024/05/03 Platform GPL25526Platform GPL25431
Summary
Purpose: For patients with osteosarcoma, disease-related mortality most often results from lung metastasis—a phenomenon shared with many solid tumors. While established metastatic lesions behave aggressively, very few of the tumor cells that reach the lung will survive. By identifying mechanisms that facilitate survival of disseminated tumor cells, we can develop therapeutic strategies that prevent and treat metastasis. Methods: We analyzed scRNAseq data from murine metastasis-bearing lungs to interrogate changes in both host and tumor cells during colonization. We used these data to elucidate pathways that become activated in cells that survive dissemination and identify candidate host-derived signals that drive activation. We validated these findings through live cell reporter systems, immunocytochemistry, and fluorescent immunohistochemistry. We then validated the functional relevance of key candidates using pharmacologic inhibition in models of metastatic osteosarcoma. Results: Expression patterns suggest that the MAPK pathway is significantly elevated in early and (to a lesser degree) established metastases. MAPK activity correlates with expression of anti-apoptotic genes, especially MCL1. Niche cells produce growth factors that increase ERK phosphorylation and MCL1 expression in tumor cells. Both early and established metastases are vulnerable to MCL1 inhibition, but not MEK inhibition in vivo. Combining MCL1 inhibition with chemotherapy both prevented colonization and eliminated established metastases in murine models of osteosarcoma. Conclusion: Niche-derived growth factors drive MAPK activity and MCL1 expression in osteosarcoma, promoting metastatic colonization. Although later metastases produce less MCL1, they remain dependent on it. MCL1 is a promising target for clinical trials in both human and canine patients.
Published in
Host-derived growth factors drive ERK phosphorylation and MCL1 expression to promote osteosarcoma cell survival during metastatic lung colonization
McAloney CA, Makkawi R, Budhathoki Y et al. · Cellular oncology (Dordrecht, Netherlands) 2024 · PMID 37676378 · doi:10.1007/s13402-023-00867-w
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Also filed as BioProject PRJNA982131 and SRA study SRP442276. Searching any of these in the dataset finder brings you back here.

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