Reference : Targeting MDM2-dependent serine metabolism as a therapeutic strategy for liposarcoma.
Scientific journals : Article
Life sciences : Biochemistry, biophysics & molecular biology
Systems Biomedicine
http://hdl.handle.net/10993/54774
Targeting MDM2-dependent serine metabolism as a therapeutic strategy for liposarcoma.
English
Cissé, Madi Y. [> >]
Pyrdziak, Samuel [> >]
Firmin, Nelly [> >]
Gayte, Laurie [> >]
Heuillet, Maud [> >]
Bellvert, Floriant [> >]
Fuentes, Maryse [> >]
Delpech, Hélène [> >]
Riscal, Romain [> >]
Arena, Giuseppe mailto [IRCM, Institut de Recherche en Cancérologie de Montpellier, INSERM U1194, Université de Montpellier, Institut régional du Cancer de Montpellier, Montpellier F-34298, France.]
Chibon, Frédéric [> >]
Le Gellec, Sophie [> >]
Maran-Gonzalez, Aurélie [> >]
Chateau, Marie-Christine [> >]
Theillet, Charles [> >]
Carrere, Sébastien [> >]
Portais, Jean-Charles [> >]
Le Cam, Laurent [> >]
Linares, Laetitia K. [> >]
2020
Science translational medicine
12
547
Yes
International
1946-6234
1946-6242
United States
[en] Antineoplastic Agents/therapeutic use ; Humans ; Liposarcoma/drug therapy/genetics ; Proto-Oncogene Proteins c-mdm2/metabolism ; Serine/therapeutic use ; Tumor Suppressor Protein p53/genetics
[en] Well-differentiated and dedifferentiated liposarcomas (LPSs) are characterized by a systematic amplification of the MDM2 oncogene, which encodes a key negative regulator of the p53 pathway. The molecular mechanisms underlying MDM2 overexpression while sparing wild-type p53 in LPS remain poorly understood. Here, we show that the p53-independent metabolic functions of chromatin-bound MDM2 are exacerbated in LPS and mediate an addiction to serine metabolism that sustains nucleotide synthesis and tumor growth. Treatment of LPS cells with Nutlin-3A, a pharmacological inhibitor of the MDM2-p53 interaction, stabilized p53 but unexpectedly enhanced MDM2-mediated control of serine metabolism by increasing its recruitment to chromatin, likely explaining the poor clinical efficacy of this class of MDM2 inhibitors. In contrast, genetic or pharmacological inhibition of chromatin-bound MDM2 by SP141, a distinct MDM2 inhibitor triggering its degradation, or interfering with de novo serine synthesis, impaired LPS growth both in vitro and in clinically relevant patient-derived xenograft models. Our data indicate that targeting MDM2 functions in serine metabolism represents a potential therapeutic strategy for LPS.
http://hdl.handle.net/10993/54774
Copyright © 2020 The Authors, some rights reserved; exclusive licensee American Association for the Advancement of Science. No claim to original U.S. Government Works.

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