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Updated: Dec 8, 2025

Functional Characterization of RING-Type E3 Ubiquitin Ligases In Vitro and In Planta
Published on: December 5, 2019
Proteome-wide Analysis Reveals Substrates of E3 Ligase RNF146 Targeted for Degradation
Litong Nie1, Chao Wang1, Nan Li1
1Department of Experimental Radiation Oncology, The University of Texas MD Anderson Cancer Center, Houston, Texas, USA.
Abstract:
Specific E3 ligases target tumor suppressors for degradation. Inhibition of such E3 ligases may be an important approach to cancer treatment. RNF146 is a RING domain and PARylation-dependent E3 ligase that functions as an activator of the β-catenin/Wnt and YAP/Hippo pathways by targeting the degradation of several tumor suppressors. Tankyrases 1 and 2 (TNKS1/2) are the only known poly-ADP-ribosyltransferases that require RNF146 to degrade their substrates. However, systematic identification of RNF146 substrates have not yet been performed. To uncover substrates of RNF146 that are targeted for degradation, we generated RNF146 knockout cells and TNKS1/2-double knockout cells and performed proteome profiling with label-free quantification as well as transcriptome analysis. We identified 160 potential substrates of RNF146, which included many known substrates of RNF146 and TNKS1/2 and 122 potential TNKS-independent substrates of RNF146. In addition, we validated OTU domain-containing protein 5 and Protein mono-ADP-ribosyltransferase PARP10 as TNKS1/2-independent substrates of RNF146 and SARDH as a novel substrate of TNKS1/2 and RNF146. Our study is the first proteome-wide analysis of potential RNF146 substrates. Together, these findings not only demonstrate that proteome profiling can be a useful general approach for the systemic identification of substrates of E3 ligases but also reveal new substrates of RNF146, which provides a resource for further functional studies.
Insights
Researchers identified new cancer-related protein targets for the E3 ligase RNF146. This study provides a proteome-wide analysis of RNF146 substrates, aiding cancer treatment research.
Area of Science:
- Biochemistry
- Molecular Biology
- Oncology
Background:
- E3 ligases target tumor suppressors for degradation, presenting a cancer treatment strategy.
- RNF146 is a PARylation-dependent E3 ligase activating Wnt and Hippo pathways by degrading tumor suppressors.
- Tankyrases (TNKS1/2) are key partners for RNF146 in substrate degradation, but a full substrate list is unknown.
Purpose of the Study:
- To systematically identify RNF146 substrates using proteome-wide analysis.
- To distinguish between TNKS-dependent and TNKS-independent RNF146 substrates.
- To discover novel substrates of RNF146 and TNKS1/2.
Main Methods:
- Generated RNF146 and TNKS1/2 double knockout cells.
- Performed proteome profiling using label-free quantification.
- Conducted transcriptome analysis.
Main Results:
- Identified 160 potential RNF146 substrates, including known and novel targets.
- Discovered 122 potential TNKS-independent RNF146 substrates.
- Validated OTU domain-containing protein 5 and PARP10 as TNKS-independent substrates, and SARDH as a novel TNKS/RNF146 substrate.
Conclusions:
- Proteome profiling is effective for systemic E3 ligase substrate identification.
- Revealed new RNF146 substrates, offering resources for cancer research.
- Findings advance understanding of RNF146 function in cancer-related pathways.
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