Functional dissection of <i>SPOP</i> at the amino acid level reveals a comprehensive functional landscape of variants during tumorigenesis.
basic_science · Level V
Where this comes from
- Record sourced from PubMed, PMID 42090249.
- Also identified by DOI 10.1073/pnas.2523210123 and PMC identifier 13167761.
- Licence recorded as CC BY-NC-ND.
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Abstract
Numerous proteins display pleiotropic functions in different clinical contexts. However, the molecular mechanism underlying such effects is rarely understood. Speckle-type POZ protein (<i>SPOP</i>) is a typical example, exhibiting tumor-suppressing or tumor-promoting effects in different tumor types in accordance with different amino acid changes; specifically, two distinct sets of variants in <i>SPOP</i> are commonly found in subsets of prostate cancer and endometrial cancer patients. To comprehensively characterize the functional landscape of <i>SPOP</i> alteration, we performed a deep mutational screening (DMS), elucidating the functionality of 7,933 out of 8,228 possible single amino acid changes (96.4% coverage). Leveraging the observation that overexpression of human <i>SPOP</i> leads to yeast growth arrest, we assessed the functionality of each variant using a yeast proliferation assay. In addition, our approach combined long-read and short-read sequencing. Finally, our DMS model enables a clear distinction of likely-loss-of-function variants that are enriched in prostate cancers and reveals their differential characteristics in both protein structure and genetic assessments. These results demonstrate the utility of our approach in high-resolution mapping and amino acid-level interpretation of protein function.
Medical subject headings
- Repressor Proteins
- Nuclear Proteins
- Prostatic Neoplasms
- Carcinogenesis