Single-cell epigenetic profiling reveals an interferon response-high program associated with BAP1 deficiency in
Sabrina Y Camp1,2, Meng Xiao He1,2,3, Michael S Cuoco2,4
1Department of Medical Oncology, Dana-Farber Cancer Institute, Boston, MA 02115, USA.
Abstract:
Renal cell carcinoma (RCC) is characterized by recurrent somatic mutations in epigenetic regulators, which stratify patients into clinically significant subgroups with distinct prognoses and treatment responses. However, the cell type-specific epigenetic landscape of RCC-broadly and in the context of these mutations-is incompletely understood. To investigate these open questions, we integrated single nucleus ATAC sequencing data from RCC tumors across four independent cohorts. In clear cell RCC tumors, we identified four shared malignant epigenetic programs related to angiogenesis, proximal tubule-like features, interferon (IFN) signaling, and one that lacked distinct genomic regions with increased accessibility. Among the mutated epigenetic regulators, BAP1 mutation exhibited the most significant impact on chromatin accessibility in tumor cells, and the associated epigenetic changes were linked to IFN response. We identify multiple potential sources of elevated IFN signaling in these lesions, such as increased immune infiltration and increased accessibility and expression of an IFN-associated ERV, ERV3-16A3_LTR. We find that the expression of ERV3-16A3_LTR may itself be a negative prognostic biomarker in ccRCC. Our findings highlight the convergence of malignant epigenetic programs across ccRCC tumors and suggest that BAP1 loss, potentially through ERV3-16A3_LTR dysregulation, is associated with an IFN response-high epigenetic program.
Insights
Renal cell carcinoma (RCC) epigenetic changes reveal four malignant programs. BAP1 mutations link to interferon response and poor prognosis in clear cell RCC, potentially via ERV3-16A3_LTR.
Area of Science:
- Genomics
- Epigenetics
- Oncology
Background:
- Renal cell carcinoma (RCC) has recurrent epigenetic mutations defining patient subgroups.
- The cell-type-specific epigenetic landscape of RCC, especially concerning mutations, is not fully understood.
Purpose of the Study:
- To investigate the epigenetic landscape of RCC across different mutations.
- To identify cell-type-specific epigenetic programs in clear cell RCC (ccRCC).
Main Methods:
- Integration of single nucleus ATAC sequencing data from four independent RCC cohorts.
- Analysis of chromatin accessibility and gene expression in relation to mutations.
Main Results:
- Four shared malignant epigenetic programs identified in ccRCC: angiogenesis, proximal tubule-like features, interferon (IFN) signaling, and a program lacking distinct accessible regions.
- BAP1 mutations significantly impacted chromatin accessibility, linking to IFN response.
- Elevated IFN signaling sources include immune infiltration and increased ERV3-16A3_LTR accessibility/expression.
- ERV3-16A3_LTR expression may be a negative prognostic biomarker in ccRCC.
Conclusions:
- Malignant epigenetic programs converge across ccRCC tumors.
- BAP1 loss is associated with an IFN response-high epigenetic program, potentially mediated by ERV3-16A3_LTR dysregulation.


