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p27T187A knockin identifies Skp2/Cks1 pocket inhibitors for advanced prostate cancer
1Departments of Developmental and Molecular Biology, and Ophthalmology and Visual Sciences, and Medicine, The Albert Einstein Comprehensive Cancer Center and Liver Research Center, Albert Einstein College of Medicine, Bronx, NY, USA.
Abstract:
SCFSkp2/Cks1 ubiquitinates Thr187-phosphorylated p27 for degradation. Overexpression of Skp2 coupled with underexpression of p27 are frequent characteristics of cancer cells. When the role of SCFSkp2/Cks1-mediated p27 ubiquitination in cancer was specifically tested by p27 Thr187-to-Ala knockin (p27T187A KI), it was found dispensable for KrasG12D-induced lung tumorigenesis but essential for Rb1-deficient pituitary tumorigenesis. Here we identify pRb and p53 doubly deficient (DKO) prostate tumorigenesis as a context in which p27 ubiquitination by SCFSkp2/Cks1 is required for p27 downregulation. p27 protein accumulated in prostate when p27T187A KI mice underwent DKO prostate tumorigenesis. p27T187A KI or Skp2 knockdown (KD) induced similar degrees of p27 protein accumulation in DKO prostate cells, and Skp2 KD did not further increase p27 protein in DKO prostate cells that contained p27T187A KI (AADKO prostate cells). p27T187A KI activated an E2F1-p73-apoptosis axis in DKO prostate tumorigenesis, slowed disease progression and significantly extended survival. Querying co-occurrence relationships among RB1, TP53, PTEN, NKX3-1 and MYC in TCGA of prostate cancer identified co-inactivation of RB1 and TP53 as the only statistically significant co-occurrences in metastatic castration-resistant prostate cancer (mCRPC). Together, our study identifies Skp2/Cks1 pocket inhibitors as potential therapeutics for mCRPC. Procedures for establishing mCRPC organoid cultures from contemporary patients were recently established. An Skp2/Cks1 pocket inhibitor preferentially collapsed DKO prostate tumor organoids over AADKO organoids, which spontaneously disintegrated over time when DKO prostate tumor organoids grew larger, setting the stage to translate mouse model findings to precision medicine in the clinic on the organoid platform.
Insights
The Skp2/Cks1 complex targets p27 for degradation, a process crucial in some cancers. Inhibiting Skp2/Cks1 shows promise for treating metastatic castration-resistant prostate cancer (mCRPC).
Area of Science:
- Oncology
- Molecular Biology
- Cancer Genetics
Background:
- The SCFSkp2/Cks1 complex ubiquitinates phosphorylated p27 (p27T187) for proteasomal degradation.
- Skp2 overexpression and p27 underexpression are hallmarks of many cancers.
- Previous studies showed p27 ubiquitination is dispensable in KrasG12D-induced lung cancer but essential in Rb1-deficient pituitary tumors.
Purpose of the Study:
- To investigate the role of SCFSkp2/Cks1-mediated p27 ubiquitination in pRb and p53 doubly deficient (DKO) prostate tumorigenesis.
- To explore the therapeutic potential of targeting Skp2/Cks1 in metastatic castration-resistant prostate cancer (mCRPC).
Main Methods:
- Utilized p27 Thr187-to-Ala knockin (p27T187A KI) mice to block p27 ubiquitination.
- Generated pRb and p53 doubly deficient (DKO) prostate cancer models.
- Analyzed gene co-occurrence in TCGA prostate cancer data.
- Tested Skp2/Cks1 pocket inhibitors on DKO and AADKO prostate tumor organoids.
Main Results:
- p27 protein accumulated in DKO prostate tumors with p27T187A KI, indicating Skp2/Cks1 is required for p27 downregulation in this context.
- p27T187A KI activated an E2F1-p73-apoptosis axis, slowing tumor progression and extending survival in DKO mice.
- Co-inactivation of RB1 and TP53 was significantly associated with metastatic castration-resistant prostate cancer (mCRPC).
- Skp2/Cks1 inhibitors effectively reduced DKO prostate tumor organoids, while AADKO organoids disintegrated.
Conclusions:
- p27 ubiquitination by SCFSkp2/Cks1 is essential for p27 downregulation in DKO prostate tumorigenesis.
- Targeting Skp2/Cks1 is a promising therapeutic strategy for mCRPC.
- Organoid models provide a platform for translating these findings into clinical applications for precision medicine.
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