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Published on: November 28, 2019
TAZ facilitates breast tumor growth by promoting an immune-suppressive tumor microenvironment
Anat Gershoni1, Ori Hassin1, Nishanth Belugali Nataraj2
1Department of Molecular Cell Biology, Weizmann Institute of Science, Rehovot, Israel.
Abstract:
The core Hippo pathway module consists of a tumour-suppressive kinase cascade that inhibits the transcriptional coactivators Yes-associated protein (YAP) and WW domain-containing transcription regulator protein 1 (WWTR1; also known as TAZ). When the Hippo pathway is downregulated, as often occurs in breast cancer, YAP/TAZ activity is induced. To elaborate the roles of TAZ in triple-negative breast cancer (TNBC), we depleted Taz in murine TNBC 4T1 cells, using either CRISPR/Cas9 or small hairpin RNA (shRNA). TAZ-depleted cells and their controls, harbouring wild-type levels of TAZ, were orthotopically injected into the mammary fat pads of syngeneic BALB/c female mice, and mice were monitored for tumour growth. TAZ depletion resulted in smaller tumours compared to the tumours generated by control cells, in line with the notion that TAZ functions as an oncogene in breast cancer. Tumours, as well as their corresponding in vitro cultured cells, were then subjected to gene expression profiling by RNA sequencing (RNA-seq). Interestingly, pathway analysis of the RNA-seq data indicated a TAZ-dependent enrichment of 'Inflammatory Response', a pathway correlated with TAZ expression levels also in human breast cancer tumours. Specifically, the RNA-seq analysis predicted a significant depletion of regulatory T cells (Tregs) in TAZ-deficient tumours, which was experimentally validated by the staining of tumour sections and by quantitative cytometry by time of flight (CyTOF). Strikingly, the differences in tumour size were completely abolished in immune-deficient mice, demonstrating that the immune-modulatory capacity of TAZ is critical for its oncogenic activity in this setting. Cytokine array analysis of conditioned medium from cultured cells revealed that TAZ increased the abundance of a small group of cytokines, including plasminogen activator inhibitor 1 (Serpin E1; also known as PAI-1), CCN family member 4 (CCN4; also known as WISP-1) and interleukin-23 (IL-23), suggesting a potential mechanistic explanation for its in vivo immunomodulatory effect. Together, our results imply that TAZ functions in a non-cell-autonomous manner to modify the tumour immune microenvironment and dampen the anti-tumour immune response, thereby facilitating tumour growth.
Insights
WWTR1 (TAZ) promotes triple-negative breast cancer growth by suppressing anti-tumor immunity. Depleting TAZ in mouse models reduced tumor size and altered the immune microenvironment, highlighting TAZ
Area of Science:
- Oncology
- Immunology
- Molecular Biology
Background:
- The Hippo pathway's core kinase cascade inhibits YAP and WWTR1 (TAZ), key transcriptional coactivators.
- Downregulation of the Hippo pathway, common in breast cancer, leads to YAP/TAZ activity induction.
- WWTR1 (TAZ) is implicated as a potential oncogene in breast cancer progression.
Purpose of the Study:
- To investigate the specific roles of WWTR1 (TAZ) in triple-negative breast cancer (TNBC) pathogenesis.
- To elucidate the mechanisms by which TAZ influences the tumor immune microenvironment and tumor growth.
Main Methods:
- Depletion of TAZ in murine TNBC 4T1 cells using CRISPR/Cas9 and shRNA.
- Orthotopic injection of TAZ-depleted and control cells into mice, followed by tumor growth monitoring.
- Gene expression profiling via RNA sequencing (RNA-seq) of tumors and cultured cells.
- Experimental validation of RNA-seq findings using tumor section staining and CyTOF for regulatory T cell (Treg) quantification.
- Cytokine array analysis of conditioned media to identify TAZ-modulated secreted factors.
Main Results:
- TAZ depletion significantly reduced tumor size in vivo, supporting its oncogenic role.
- RNA-seq analysis revealed a TAZ-dependent enrichment of the 'Inflammatory Response' pathway.
- TAZ deficiency led to a significant depletion of regulatory T cells (Tregs) within tumors.
- Tumor growth differences were abolished in immune-deficient mice, underscoring TAZ's immune-modulatory function.
- TAZ increased the secretion of cytokines including PAI-1, WISP-1, and IL-23, suggesting a mechanism for immune modulation.
Conclusions:
- WWTR1 (TAZ) functions non-cell-autonomously to promote triple-negative breast cancer growth.
- TAZ modifies the tumor immune microenvironment by dampening anti-tumor immune responses, particularly Treg infiltration.
- TAZ's oncogenic activity in this context is critically dependent on its immune-modulatory capacity.
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