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Modeling Spontaneous Metastatic Renal Cell Carcinoma mRCC in Mice Following Nephrectomy
Published on: April 29, 2014
Integrated epigenomic profiling reveals endogenous retrovirus reactivation in renal cell carcinoma
Kyle T Siebenthall1, Chris P Miller2, Jeff D Vierstra1
1Altius Institute for Biomedical Sciences, Seattle, WA 98121, United States.
Background:
Transcriptional dysregulation drives cancer formation but the underlying mechanisms are still poorly understood. Renal cell carcinoma (RCC) is the most common malignant kidney tumor which canonically activates the hypoxia-inducible transcription factor (HIF) pathway. Despite intensive study, novel therapeutic strategies to target RCC have been difficult to develop. Since the RCC epigenome is relatively understudied, we sought to elucidate key mechanisms underpinning the tumor phenotype and its clinical behavior.
Methods:
We performed genome-wide chromatin accessibility (DNase-seq) and transcriptome profiling (RNA-seq) on paired tumor/normal samples from 3 patients undergoing nephrectomy for removal of RCC. We incorporated publicly available data on HIF binding (ChIP-seq) in a RCC cell line. We performed integrated analyses of these high-resolution, genome-scale datasets together with larger transcriptomic data available through The Cancer Genome Atlas (TCGA).
Findings:
Though HIF transcription factors play a cardinal role in RCC oncogenesis, we found that numerous transcription factors with a RCC-selective expression pattern also demonstrated evidence of HIF binding near their gene body. Examination of chromatin accessibility profiles revealed that some of these transcription factors influenced the tumor's regulatory landscape, notably the stem cell transcription factor POU5F1 (OCT4). Elevated POU5F1 transcript levels were correlated with advanced tumor stage and poorer overall survival in RCC patients. Unexpectedly, we discovered a HIF-pathway-responsive promoter embedded within a endogenous retroviral long terminal repeat (LTR) element at the transcriptional start site of the PSOR1C3 long non-coding RNA gene upstream of POU5F1. RNA transcripts are induced from this promoter and read through PSOR1C3 into POU5F1 producing a novel POU5F1 transcript isoform. Rather than being unique to the POU5F1 locus, we found that HIF binds to several other transcriptionally active LTR elements genome-wide correlating with broad gene expression changes in RCC.
Interpretation:
Integrated transcriptomic and epigenomic analysis of matched tumor and normal tissues from even a small number of primary patient samples revealed remarkably convergent shared regulatory landscapes. Several transcription factors appear to act downstream of HIF including the potent stem cell transcription factor POU5F1. Dysregulated expression of POU5F1 is part of a larger pattern of gene expression changes in RCC that may be induced by HIF-dependent reactivation of dormant promoters embedded within endogenous retroviral LTRs.
Insights
Hypoxia-inducible factors (HIF) dysregulate renal cell carcinoma (RCC) epigenomes by reactivating endogenous retroviral elements. This drives expression of stem cell factors like POU5F1, correlating with advanced RCC and poorer survival.
Area of Science:
- Oncology
- Epigenetics
- Molecular Biology
Background:
- Transcriptional dysregulation is a key driver of cancer, yet its mechanisms in renal cell carcinoma (RCC) remain unclear.
- RCC is the most common kidney cancer, characterized by activation of the hypoxia-inducible factor (HIF) pathway.
- The epigenome of RCC is underexplored, necessitating investigation into tumor phenotype and clinical behavior drivers.
Purpose of the Study:
- To elucidate the epigenetic mechanisms underlying RCC tumor phenotype and clinical behavior.
- To investigate the role of transcription factors and their regulation by HIF in RCC.
- To identify novel therapeutic targets by understanding the RCC epigenome.
Main Methods:
- Genome-wide chromatin accessibility (DNase-seq) and transcriptome profiling (RNA-seq) were performed on paired tumor/normal RCC samples.
- Publicly available HIF binding data (ChIP-seq) from an RCC cell line was incorporated.
- Integrated analyses combined these datasets with larger transcriptomic data from The Cancer Genome Atlas (TCGA).
Main Results:
- Numerous transcription factors, besides HIF, showed HIF binding and RCC-selective expression, influencing the tumor regulatory landscape.
- The stem cell transcription factor POU5F1 (OCT4) levels correlated with advanced RCC stage and poorer patient survival.
- A novel POU5F1 transcript isoform was identified, driven by a HIF-responsive promoter within an endogenous retroviral long terminal repeat (LTR) element.
Conclusions:
- Integrated transcriptomic and epigenomic analyses revealed convergent regulatory landscapes in RCC.
- HIF signaling appears to induce POU5F1 expression, potentially through reactivation of dormant LTR promoters.
- Dysregulated POU5F1 expression is part of a broader gene expression pattern in RCC driven by HIF-dependent LTR reactivation.
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