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In Vitro Ubiquitination and Deubiquitination Assays of Nucleosomal Histones
Published on: July 25, 2019
Hyd/UBR5 defines a tumor suppressor pathway that links Polycomb repressive complex to regulated protein degradation
Pei Wen1, Huiyan Lei1, Hua Deng1
1Department of Physiology, Howard Hughes Medical Institute, University of Texas Southwestern Medical Center, Dallas, Texas 75390, USA.
Abstract:
Tumor suppressor genes play critical roles in normal tissue homeostasis, and their dysregulation underlies human diseases including cancer. Besides human genetics, model organisms such as Drosophila have been instrumental in discovering tumor suppressor pathways that were subsequently shown to be highly relevant in human cancer. Here we show that hyperplastic disc (Hyd), one of the first tumor suppressors isolated genetically in Drosophila and encoding an E3 ubiquitin ligase with hitherto unknown substrates, and Lines (Lin), best known for its role in embryonic segmentation, define an obligatory tumor suppressor protein complex (Hyd-Lin) that targets the zinc finger-containing oncoprotein Bowl for ubiquitin-mediated degradation, with Lin functioning as a substrate adaptor to recruit Bowl to Hyd for ubiquitination. Interestingly, the activity of the Hyd-Lin complex is directly inhibited by a micropeptide encoded by another zinc finger gene, drumstick (drm), which functions as a pseudosubstrate by displacing Bowl from the Hyd-Lin complex, thus stabilizing Bowl. We further identify the epigenetic regulator Polycomb repressive complex1 (PRC1) as a critical upstream regulator of the Hyd-Lin-Bowl pathway by directly repressing the transcription of the micropeptide drm Consistent with these molecular studies, we show that genetic inactivation of Hyd, Lin, or PRC1 resulted in Bowl-dependent hyperplastic tissue overgrowth in vivo. We also provide evidence that the mammalian homologs of Hyd (UBR5, known to be recurrently dysregulated in various human cancers), Lin (LINS1), and Bowl (OSR1/2) constitute an analogous protein degradation pathway in human cells, and that OSR2 promotes prostate cancer tumorigenesis. Altogether, these findings define a previously unrecognized tumor suppressor pathway that links epigenetic program to regulated protein degradation in tissue growth control and tumorigenesis.
Insights
A novel tumor suppressor pathway involving the Hyd-Lin complex targets the oncoprotein Bowl for degradation. This pathway, regulated by the micropeptide Drumstick and epigenetic factor PRC1, is crucial for controlling tissue growth and preventing cancer.
Area of Science:
- Molecular Biology
- Genetics
- Cancer Research
Background:
- Tumor suppressor genes are vital for tissue homeostasis and preventing diseases like cancer.
- Model organisms, including Drosophila, have been key in identifying conserved tumor suppressor pathways relevant to human cancer.
Purpose of the Study:
- To elucidate the function of the Drosophila tumor suppressor hyperplastic disc (Hyd) and its interaction with the Lines (Lin) protein.
- To identify the targets and regulatory mechanisms of the Hyd-Lin tumor suppressor complex.
- To investigate the role of this pathway in tissue growth control and its relevance to human tumorigenesis.
Main Methods:
- Genetic analysis in Drosophila to identify tumor suppressor pathways.
- Biochemical assays to determine protein complex formation and substrate interactions.
- In vivo studies to assess the impact of genetic inactivation on tissue overgrowth.
- Analysis of mammalian homologs to confirm pathway conservation and relevance in human cells.
Main Results:
- The Hyd-Lin complex forms an obligatory tumor suppressor complex that targets the oncoprotein Bowl for ubiquitin-mediated degradation.
- The micropeptide Drumstick (drm) inhibits the Hyd-Lin complex by displacing Bowl, stabilizing it.
- Polycomb repressive complex 1 (PRC1) epigenetically represses drm transcription, thereby regulating the Hyd-Lin-Bowl pathway.
- Inactivation of Hyd, Lin, or PRC1 leads to Bowl-dependent tissue overgrowth in vivo.
- Mammalian homologs UBR5, LINS1, and OSR1/2 form an analogous pathway, with OSR2 promoting prostate cancer.
Conclusions:
- A novel tumor suppressor pathway linking epigenetic regulation to protein degradation in controlling tissue growth has been identified.
- This pathway involves the Hyd-Lin complex targeting Bowl for degradation, with regulation by drm and PRC1.
- The conserved mammalian pathway highlights potential therapeutic targets for human cancers, particularly prostate cancer.
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