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Targeting cancer addiction for SALL4 by shifting its transcriptome with a pharmacologic peptide
Bee Hui Liu1, Chacko Jobichen1,2, C S Brian Chia3
1Cancer Science Institute of Singapore, National University of Singapore, 117599 Singapore.
Abstract:
Sal-like 4 (SALL4) is a nuclear factor central to the maintenance of stem cell pluripotency and is a key component in hepatocellular carcinoma, a malignancy with no effective treatment. In cancer cells, SALL4 associates with nucleosome remodeling deacetylase (NuRD) to silence tumor-suppressor genes, such as PTEN. Here, we determined the crystal structure of an amino-terminal peptide of SALL4(1-12) complexed to RBBp4, the chaperone subunit of NuRD, at 2.7 Å, and subsequent design of a potent therapeutic SALL4 peptide (FFW) capable of antagonizing the SALL4-NURD interaction using systematic truncation and amino acid substitution studies. FFW peptide disruption of the SALL4-NuRD complex resulted in unidirectional up-regulation of transcripts, turning SALL4 from a dual transcription repressor-activator mode to singular transcription activator mode. We demonstrate that FFW has a target affinity of 23 nM, and displays significant antitumor effects, inhibiting tumor growth by 85% in xenograft mouse models. Using transcriptome and survival analysis, we discovered that the peptide inhibits the transcription-repressor function of SALL4 and causes massive up-regulation of transcripts that are beneficial to patient survival. This study supports the SALL4-NuRD complex as a drug target and FFW as a viable drug candidate, showcasing an effective strategy to accurately target oncogenes previously considered undruggable.
Insights
A novel peptide, FFW, disrupts the SALL4-NuRD complex, inhibiting hepatocellular carcinoma growth. This peptide shifts SALL4
Area of Science:
- Oncology
- Molecular Biology
- Drug Discovery
Background:
- Sal-like 4 (SALL4) is crucial for stem cell pluripotency and a key driver in hepatocellular carcinoma.
- SALL4 interacts with the NuRD complex to suppress tumor suppressor genes like PTEN in cancer cells.
Purpose of the Study:
- To determine the structural basis of SALL4-NuRD interaction.
- To design a therapeutic peptide targeting the SALL4-NuRD complex for hepatocellular carcinoma treatment.
Main Methods:
- Crystal structure determination of SALL4(1-12) peptide complexed with RBBp4.
- Systematic peptide truncation and substitution studies to design the FFW peptide.
- In vitro and in vivo evaluation of FFW peptide's efficacy in hepatocellular carcinoma models.
Main Results:
- The SALL4-NuRD complex structure was elucidated.
- A potent SALL4 antagonist peptide (FFW) was designed with high target affinity (23 nM).
- FFW peptide inhibited tumor growth by 85% in xenograft models, up-regulating beneficial transcripts.
Conclusions:
- The SALL4-NuRD complex is a viable drug target for hepatocellular carcinoma.
- FFW peptide represents a promising therapeutic candidate for targeting previously undruggable oncogenes.
- Disrupting SALL4-NuRD shifts SALL4's function, enhancing anti-tumor effects and patient survival.
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