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Transforming activity and therapeutic targeting of C-terminal-binding protein 2 in Apc-mutated neoplasia
E T Sumner1, A T Chawla2, A D Cororaton3
1Department of Pharmacology/Toxicology, Virginia Commonwealth University, Richmond, VA, USA.
Abstract:
Overexpression of the transcriptional coregulators C-terminal binding proteins 1 and 2 (CtBP1 and 2) occurs in many human solid tumors and is associated with poor prognosis. CtBP modulates oncogenic gene expression programs and is an emerging drug target, but its oncogenic role is unclear. Consistent with this oncogenic potential, exogenous CtBP2 transformed primary mouse and human cells to anchorage independence similarly to mutant H-Ras. To investigate CtBP's contribution to in vivo tumorigenesis, Apcmin/+ mice, which succumb to massive intestinal polyposis, were bred to Ctbp2+/- mice. CtBP interacts with adenomatous polyposis coli (APC) protein, and is stabilized in both APC-mutated human colon cancers and Apcmin/+ intestinal polyps. Ctbp2 heterozygosity increased the median survival of Apcmin/+ mice from 21 to 48 weeks, and reduced polyp formation by 90%, with Ctbp2+/- polyps exhibiting reduced levels of β-catenin and its oncogenic transcriptional target, cyclin D1. CtBP's potential as a therapeutic target was studied by treating Apcmin/+ mice with the CtBP small-molecule inhibitors 4-methylthio-2-oxobutyric acid and 2-hydroxy-imino phenylpyruvic acid, both of which reduced polyposis by more than half compared with vehicle treatment. Phenocopying Ctbp2 deletion, both Ctbp inhibitors caused substantial decreases in the protein level of Ctbp2, as well its oncogenic partner β-catenin, and the effects of the inhibitors on CtBP and β-catenin levels could be modeled in an APC-mutated human colon cancer cell line. CtBP2 is thus a druggable transforming oncoprotein critical for the evolution of neoplasia driven by Apc mutation.
Insights
Overexpression of C-terminal binding proteins (CtBP1 and 2) drives cancer. Inhibiting CtBP2 in mice significantly reduced intestinal polyps and extended survival, validating CtBP2 as a therapeutic target for Apc-mutated cancers.
Area of Science:
- Oncology
- Molecular Biology
- Cancer Genetics
Background:
- C-terminal binding proteins (CtBP1 and 2) are overexpressed in solid tumors, correlating with poor prognosis.
- CtBP's precise oncogenic role and therapeutic potential remain unclear, despite its modulation of cancer gene expression.
Purpose of the Study:
- To investigate the in vivo oncogenic role of CtBP in tumorigenesis.
- To evaluate CtBP2 as a potential therapeutic target in Apc-mutated intestinal cancer.
Main Methods:
- Utilized Apcmin/+ mice crossed with Ctbp2+/- mice to assess CtBP2's impact on intestinal polyposis.
- Administered CtBP small-molecule inhibitors to Apcmin/+ mice to evaluate therapeutic efficacy.
- Analyzed protein levels of CtBP2, β-catenin, and cyclin D1 in polyps and cell lines.
Main Results:
- Ctbp2 heterozygosity significantly increased median survival and reduced polyp formation by 90% in Apcmin/+ mice.
- CtBP2 inhibition decreased β-catenin and cyclin D1 levels, key factors in Apc-mutated tumorigenesis.
- Small-molecule CtBP inhibitors markedly reduced polyposis and CtBP2/β-catenin levels in vivo and in vitro.
Conclusions:
- CtBP2 acts as a transforming oncoprotein critical for Apc-mutation-driven neoplasia.
- CtBP2 is a druggable target, with inhibitors showing significant therapeutic potential against intestinal polyposis.