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Published on: March 31, 2019
TCF-4 isoforms absent in TCF-4 mutated MSI-H colorectal cancer cells colocalize with nuclear CtBP and repress
P Cuilliere-Dartigues1, J El-Bchiri, A Krimi
1Inserm, U762, Paris, F-75010, France.
Abstract:
TCF-4 is the main effector of the Wnt/Wingless signalling pathway. As with other TCF/LEF factors, numerous alternative splicings at its 3' end affect its expression. Such a mechanism leads to the synthesis of numerous TCF-4 isoforms among which some contain binding domains for CtBP, an ubiquitous transcriptional corepressor. Of interest, we described a frequent TCF-4 frameshift mutation in mismatch-repair deficient colorectal cancers (MSI-H cancers) that leads to the selective loss of TCF-4 isoforms with CtBP binding abilities. We provide here data that argue for a partial colocalization of CtBP with TCF-4 isoforms containing CtBP binding domains in cellulo, and for a functional role of CtBP in repressing TCF-4 mediated transcription. We also demonstrate that such a colocalization is not observed in MSI-H colorectal cancer cells that harbour the TCF-4 frameshift mutation, and that CtBP is not able to repress TCF-4-mediated transcription in this context. Taken together, our results strongly suggest that CtBP would play a role in regulating TCF-4 mediated transcription upon its binding with some TCF-4 isoforms encoded by alternatively spliced mRNA. They also suggest a role for TCF-4 frameshift mutation during MSI-H colorectal tumour progression, by regulating the relative proportion of the different TCF-4 isoforms.
Insights
A frequent TCF-4 mutation in colorectal cancers disrupts CtBP binding, impairing transcriptional repression. This suggests CtBP plays a role in regulating TCF-4 activity and MSI-H tumor progression.
Area of Science:
- Molecular Biology
- Cancer Biology
- Transcriptional Regulation
Background:
- TCF-4 is a key effector in the Wnt/Wingless pathway.
- Alternative splicing generates TCF-4 isoforms, some binding the corepressor CtBP.
- A TCF-4 frameshift mutation is common in MSI-H colorectal cancers, losing CtBP-binding isoforms.
Purpose of the Study:
- To investigate the functional role of CtBP in TCF-4 mediated transcription.
- To examine the impact of the TCF-4 frameshift mutation on CtBP interaction and repression in MSI-H cancer cells.
Main Methods:
- Cellular colocalization studies (in cellulo).
- Functional assays assessing transcriptional repression.
- Analysis of TCF-4 isoforms in MSI-H colorectal cancer cells.
Main Results:
- CtBP partially colocalizes with TCF-4 isoforms containing CtBP-binding domains.
- CtBP functionally represses TCF-4 mediated transcription.
- This colocalization and repression are lost in MSI-H cancer cells with the TCF-4 frameshift mutation.
Conclusions:
- CtBP regulates TCF-4 transcription via binding to specific isoforms.
- The TCF-4 frameshift mutation in MSI-H cancers may contribute to tumor progression by altering TCF-4 isoform balance and disrupting CtBP-mediated repression.
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