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A Syngeneic Mouse Model of Metastatic Renal Cell Carcinoma for Quantitative and Longitudinal Assessment of Preclinical Therapies
Published on: April 12, 2017
RUNX1 Is a Driver of Renal Cell Carcinoma Correlating with Clinical Outcome
Nicholas Rooney1, Susan M Mason1, Laura McDonald1
1CRUK Beatson Institute, Garscube Estate, Switchback Road, Bearsden, Glasgow, United Kingdom.
Abstract:
The recurring association of specific genetic lesions with particular types of cancer is a fascinating and largely unexplained area of cancer biology. This is particularly true of clear cell renal cell carcinoma (ccRCC) where, although key mutations such as loss of VHL is an almost ubiquitous finding, there remains a conspicuous lack of targetable genetic drivers. In this study, we have identified a previously unknown protumorigenic role for the RUNX genes in this disease setting. Analysis of patient tumor biopsies together with loss-of-function studies in preclinical models established the importance of RUNX1 and RUNX2 in ccRCC. Patients with high RUNX1 (and RUNX2) expression exhibited significantly poorer clinical survival compared with patients with low expression. This was functionally relevant, as deletion of RUNX1 in ccRCC cell lines reduced tumor cell growth and viability in vitro and in vivo. Transcriptional profiling of RUNX1-CRISPR-deleted cells revealed a gene signature dominated by extracellular matrix remodeling, notably affecting STMN3, SERPINH1, and EPHRIN signaling. Finally, RUNX1 deletion in a genetic mouse model of kidney cancer improved overall survival and reduced tumor cell proliferation. In summary, these data attest to the validity of targeting a RUNX1-transcriptional program in ccRCC. SIGNIFICANCE: These data reveal a novel unexplored oncogenic role for RUNX genes in kidney cancer and indicate that targeting the effects of RUNX transcriptional activity could be relevant for clinical intervention in ccRCC.
Insights
RUNX1 and RUNX2 genes promote clear cell renal cell carcinoma (ccRCC) growth. Targeting RUNX1 transcriptional activity may offer new therapeutic strategies for kidney cancer patients.
Area of Science:
- Oncology
- Cancer Genetics
- Molecular Biology
Background:
- Clear cell renal cell carcinoma (ccRCC) has a limited number of targetable genetic drivers despite frequent VHL mutations.
- The specific roles of certain genetic lesions in cancer development remain largely unexplained.
Purpose of the Study:
- To investigate the potential protumorigenic role of RUNX genes in ccRCC.
- To establish the functional significance of RUNX1 and RUNX2 in ccRCC pathogenesis.
Main Methods:
- Analysis of patient tumor biopsies and loss-of-function studies in preclinical models.
- Assessing the impact of RUNX1 deletion on ccRCC cell growth and viability in vitro and in vivo.
- Transcriptional profiling of RUNX1-deleted cells and evaluation in a genetic mouse model of kidney cancer.
Main Results:
- High RUNX1 and RUNX2 expression correlated with significantly poorer clinical survival in ccRCC patients.
- RUNX1 deletion reduced tumor cell growth and viability, and improved survival in a mouse model.
- RUNX1 deletion altered gene expression related to extracellular matrix remodeling and ephrin signaling.
Conclusions:
- RUNX genes, particularly RUNX1, play a novel oncogenic role in ccRCC.
- Targeting RUNX1 transcriptional programs presents a potential therapeutic strategy for ccRCC.
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