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Published on: February 28, 2021
Structural Genomics Defines PBRM1 Bromodomain Variant Function in ccRCC
Karina L Bursch1,2, Salomão D Jorge2, Audrey E Catlin1
1Department of Biochemistry, Medical College of Wisconsin, Milwaukee, Wisconsin, USA, mcw.edu.
Polybromo-1 (PBRM1) missense variants in clear cell renal cell carcinoma (ccRCC) impact protein function. Computational analysis predicts variant effects on PBRM1 bromodomains, aiding personalized ccRCC therapy strategies.
Area of Science:
- Genomics and Proteomics
- Cancer Biology
- Computational Biology
Background:
- Poly-bromo-1 (PBRM1) is crucial for chromatin regulation and is altered in ~40% of clear cell renal cell carcinoma (ccRCC) cases.
- PBRM1 loss is linked to better responses to antiangiogenic and immune checkpoint blockade therapies in ccRCC.
- Missense variants in PBRM1, particularly in bromodomains, are found in 16% of ccRCC cases, but their functional impact and effect on therapy response remain unclear.
Purpose of the Study:
- To computationally assess the impact of ccRCC-associated missense variants in PBRM1 bromodomains on molecular fitness.
- To correlate computational predictions with experimental biophysical data for variant assessment.
- To understand how PBRM1 variants affect protein function and potentially influence ccRCC patient response to therapy.
Main Methods:
- Integrated structural genomics analysis (2D, 3D, 4D) of 33 ccRCC-associated missense variants in PBRM1 bromodomains.
- Evaluation of molecular fitness, including stability, structural integrity, and ligand binding.
- Comparison of computational predictions with biophysical assays (differential scanning fluorimetry, circular dichroism, NMR, AlphaScreen, EMSA).
Main Results:
- Computational molecular fitness scores correlated with acetylated histone binding.
- 3D and integrated molecular fitness scores showed correlation with thermal stability.
- The study provides a framework for assessing the functional impact of PBRM1 missense variants.
Conclusions:
- Integrated structural genomics analysis effectively predicts the impact of PBRM1 missense variants on bromodomain function.
- This approach accelerates understanding of variant effects on PBRM1 stability and ligand binding.
- Findings support correlating specific PBRM1 variants with tumor suppressor functions and therapeutic responses in ccRCC for personalized medicine.
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