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Mode of action of trabectedin in myxoid liposarcomas
S Di Giandomenico1, R Frapolli1, E Bello1
1Department of Oncology, IRCCS-Istituto di Ricerche Farmacologiche 'Mario Negri', Milan, Italy.
Abstract:
To elucidate the mechanisms behind the high sensitivity of myxoid/round cell liposarcoma (MRCL) to trabectedin and the suggested selectivity for specific subtypes, we have developed and characterized three MRCL xenografts, namely ML017, ML015 and ML004 differing for the break point of the fusion gene FUS-CHOP, respectively of type I, II and III. FUS-CHOP binding to the promoters of some target genes such as Pentraxin 3 or Fibronectin 1, assessed by chromatin immunoprecipitation, was strongly reduced in the tumor 24 h after the first or the third weekly dose of trabectedin, indicating that the drug at therapeutic doses causes a detachment of the FUS-CHOP chimera from its target promoters as previously shown in vitro. Moreover, the higher sensitivity of MRCL types I and II appears to be related to a more prolonged block of the transactivating activity of the fusion protein. Doxorubicin did not affect the binding of FUS-CHOP to target promoters. Histologically, the response to trabectedin in ML017 and ML015 was associated with a marked depletion of non-lipogenic tumoral cells and vascular component, as well as lipidic maturation as confirmed by PPARγ2 expression in western Blot. By contrast, in ML004 no major changes either in the cellularity or in the amount of mature were found, and consistently PPARγ2 was null. In conclusion, the data support the view that the selective mechanism of action of trabectedin in MRCL is specific and related to its ability to cause a functional inactivation of the oncogenic chimera with consequent derepression of the adypocytic differentiation.
Insights
Trabectedin effectively treats myxoid/round cell liposarcoma (MRCL) by disrupting the FUS-CHOP fusion protein, particularly in types I and II MRCL, promoting adipocytic differentiation.
Area of Science:
- Oncology
- Molecular Biology
- Pharmacology
Background:
- Myxoid/round cell liposarcoma (MRCL) exhibits variable sensitivity to trabectedin.
- The FUS-CHOP fusion gene is a key oncogenic driver in MRCL.
Purpose of the Study:
- To elucidate the mechanism of trabectedin's efficacy and selectivity in MRCL subtypes.
- To investigate the drug's effect on FUS-CHOP binding and downstream cellular changes.
Main Methods:
- Development and characterization of three MRCL xenografts (ML017, ML015, ML004) representing FUS-CHOP types I, II, and III.
- Chromatin immunoprecipitation to assess FUS-CHOP binding to target gene promoters.
- Histological analysis and Western blot for PPARγ2 expression to evaluate cellular differentiation.
Main Results:
- Trabectedin significantly reduced FUS-CHOP binding to target promoters (Pentraxin 3, Fibronectin 1) in MRCL xenografts.
- MRCL types I and II showed higher sensitivity, linked to prolonged FUS-CHOP activity block.
- Trabectedin induced lipogenic maturation and reduced cellularity/vascular components in sensitive subtypes, unlike doxorubicin.
Conclusions:
- Trabectedin's selective action in MRCL involves functional inactivation of the oncogenic FUS-CHOP chimera.
- This inactivation leads to derepression of adipocytic differentiation, explaining the drug's efficacy.
- MRCL subtype and FUS-CHOP breakpoint influence response to trabectedin.
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