Related Experiment Videos
Human translocation liposarcoma-CCAAT/enhancer binding protein (C/EBP) homologous protein (TLS-CHOP) oncoprotein
G Adelmant1, J D Gilbert, S O Freytag
1Departments of Molecular Biology and Radiation Oncology, Henry Ford Health System, Detroit, Michigan 48202-3450, USA.
Abstract:
Human translocation liposarcoma (TLS)-CCAAT/enhancer binding protein (C/EBP) homologous protein (CHOP) is a fusion oncoprotein found specifically in a malignant tumor of adipose tissue and results from a t(12;16) translocation that fuses the amino-terminal part of TLS to the entire coding region of CHOP. Being that CHOP is a member of the C/EBP transcription factor family, proteins that comprise part of the adipocyte differentiation machinery, we examined whether TLS-CHOP blocked adipocyte differentiation by directly interfering with C/EBP function. Using a single-step retroviral infection protocol, either wild-type or mutant TLS-CHOP were co-expressed along with C/EBPbeta in naïve NIH3T3 cells, and their ability to inhibit C/EBPbeta-driven adipogenesis was determined. TLS-CHOP was extremely effective at blocking adipocyte differentiation when expressed at a level comparable to that observed in human myxoid liposarcoma. This effect of TLS-CHOP required a functional leucine zipper domain and correlated with its ability to heterodimerize with C/EBPbeta and inhibit C/EBPbeta DNA binding and transactivation activity in situ. In contrast, the TLS-CHOP basic region was dispensable, making it unlikely that the inhibitory effect of TLS-CHOP is attributable to unscheduled gene expression resulting from TLS-CHOP's putative transactivation activity. Another adipogenic transcription factor, PPARgamma2, was able to rescue TLS-CHOP-inhibited cells, indicating that TLS-CHOP interferes primarily with C/EBPbeta-driven adipogenesis and not with other requisite events of the adipocyte differentiation program. Together, the results demonstrate that TLS-CHOP blocks adipocyte differentiation by directly preventing C/EBPbeta from binding to and transactivating its target genes. Moreover, they provide strong support for the thesis that a blockade to normal differentiation is an important aspect of the cancer process.
Insights
The fusion oncoprotein TLS-CHOP blocks fat cell differentiation by interfering with the transcription factor C/EBPbeta. This mechanism highlights how blocking normal cell differentiation contributes to cancer development.
Area of Science:
- Oncology
- Molecular Biology
- Cell Differentiation
Background:
- Human translocation liposarcoma (TLS)-CCAAT/enhancer binding protein (C/EBP) homologous protein (CHOP) is a fusion oncoprotein specific to adipose tissue tumors.
- CHOP is part of the C/EBP transcription factor family, crucial for adipocyte differentiation.
Purpose of the Study:
- To investigate if TLS-CHOP inhibits adipocyte differentiation by interfering with C/EBP function.
- To elucidate the molecular mechanism by which TLS-CHOP affects adipogenesis.
Main Methods:
- Co-expression of wild-type or mutant TLS-CHOP with C/EBPbeta in NIH3T3 cells via retroviral infection.
- Assessment of inhibition of C/EBPbeta-driven adipogenesis.
- Analysis of TLS-CHOP's interaction with C/EBPbeta, including DNA binding and transactivation assays.
Main Results:
- TLS-CHOP effectively blocked adipocyte differentiation at levels found in human liposarcoma.
- Inhibition required a functional leucine zipper domain and correlated with impaired C/EBPbeta DNA binding and transactivation.
- PPARgamma2 could rescue TLS-CHOP-inhibited cells, indicating specific interference with C/EBPbeta pathways.
Conclusions:
- TLS-CHOP blocks adipocyte differentiation by directly inhibiting C/EBPbeta's ability to bind and activate target genes.
- This study supports the role of blocked normal differentiation in cancer pathogenesis.
- The findings provide a molecular basis for TLS-CHOP's oncogenic activity in liposarcoma.