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TAZ downregulated ANXA1 expression to modulate myeloma cell interactions with bone marrow mesenchymal stromal cells
Samuel O Abegunde1, Stacy Grieve2, Tony Reiman3
1Department of Biology, University of New Brunswick, Saint John, NB, Canada; Dalhousie Medicine NB, Saint John, NB, Canada; Vancouver General Hospital, Vancouver, BC, Canada.
Abstract:
We and others have previously shown that TAZ plays a tumor suppressive role in multiple myeloma. However, recent reports suggest that molecular crosstalk between the myeloma cells and bone marrow stromal components contributes to the myeloma cell survival and drug resistance. These reports further point to reciprocal interaction via adhesion molecules as the most prominent mechanism of intercellular crosstalk between myeloma cells and bone marrow mesenchymal stromal cells (BM-MSCs). YAP/TAZ silencing/expression has been shown to correlate across all cancers with a set of adhesion/extracellular matrix proteins. Therefore, we hypothesized that TAZ may regulate myeloma cell interaction with BM stromal cells by influencing the expression of distinct cell adhesion signatures. We used previously established TAZ myeloma cell line models, including DELTA47-pLENTI or TAZ knockout DELTA47 cells cocultured with or without BM-MSCs, as our study models. Using RNA sequencing analysis, we performed the first comprehensive screen for cell adhesion-related transcriptional targets of TAZ in multiple myeloma (MM). In doing so, we uncovered an enrichment of cell adhesion-related genes in TAZ knockout DELTA47 cells relatively to pLENTI-DELTA47 cells, including 11 genes with log2 fold change > 2 (p < 0.05), namely, ANXA1, ADGRL2, NCAM1, NCAM2, ADGRL3, CXADR, ALCAM, JAM2, KIRREL1, KIRREL2, and ADGRG7, suggesting possible relationship with TAZ. We validated ANXA1 as a bona fide target of TAZ in MM. We show that TAZ represses myeloma cell migration and interaction with BM-MSCs by transcriptionally downregulating ANXA1 expression via TEAD-dependent mechanism. Our data provide new insights into the understanding of the role of TAZ in the intercellular communication signals between myeloma cells and BM-MSCs. Our findings also suggest that ANXA1 represents a putative cell adhesion target to attenuate BM-MSC driven, tumor-promoting interaction with myeloma cells.
Insights
TAZ protein suppresses multiple myeloma (MM) cell migration and interaction with bone marrow stromal cells by downregulating ANXA1 expression. This identifies ANXA1 as a potential target to reduce tumor-promoting interactions in MM.
Area of Science:
- Oncology
- Molecular Biology
- Cell Biology
Background:
- The TAZ protein has a known tumor-suppressive role in multiple myeloma (MM).
- Intercellular crosstalk between myeloma cells and bone marrow mesenchymal stromal cells (BM-MSCs) via adhesion molecules promotes myeloma cell survival and drug resistance.
- YAP/TAZ expression correlates with adhesion/extracellular matrix proteins in cancers.
Purpose of the Study:
- To investigate if TAZ regulates myeloma cell interaction with BM-MSCs by influencing cell adhesion gene expression.
- To identify specific cell adhesion signatures regulated by TAZ in multiple myeloma.
Main Methods:
- Utilized TAZ myeloma cell line models (DELTA47-pLENTI and TAZ knockout DELTA47 cells) co-cultured with BM-MSCs.
- Performed RNA sequencing analysis to screen for TAZ-regulated cell adhesion genes.
- Validated ANXA1 as a target of TAZ in MM using TEAD-dependent mechanisms.
Main Results:
- Discovered an enrichment of cell adhesion genes in TAZ knockout cells compared to control cells.
- Identified 11 significantly upregulated cell adhesion genes (log2 fold change > 2, p < 0.05) in TAZ knockout cells, including ANXA1.
- Demonstrated that TAZ transcriptionally downregulates ANXA1 expression, thereby repressing myeloma cell migration and interaction with BM-MSCs.
Conclusions:
- TAZ plays a role in regulating intercellular communication between myeloma cells and BM-MSCs.
- TAZ represses myeloma cell interaction with BM-MSCs through the transcriptional downregulation of ANXA1.
- ANXA1 is a potential therapeutic target to disrupt BM-MSC-mediated tumor promotion in multiple myeloma.
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