Induction of a secreted protein by the myxoid liposarcoma oncogene

  1. Masahiko Kuroda*,
  2. XiaoZhong Wang*,
  3. John Sok*,
  4. Yin Yin*,
  5. Peter Chung*,
  6. JoAnn W. Giannotti,
  7. Kenneth A. Jacobs,
  8. Lori J. Fitz,
  9. Patricia Murtha-Riel,
  10. Katherine J. Turner, and
  11. David Ron*,
  1. *Skirball Institute of Biomolecular Medicine, Departments of Medicine, Cell Biology, and the Kaplan Cancer Center, New York University Medical Center, New York, NY 10016; and Genetics Institute, Cambridge MA 02140
  1. Edited by M. Daniel Lane, Johns Hopkins University School of Medicine, Baltimore, MD, and approved February 23, 1999 (received for review December 4, 1998)

Abstract

The TLS-CHOP oncoprotein, found in the majority of human myxoid liposarcomas, consists of a fusion between the transcription factor CHOP/GADD153 and the N terminus of an RNA-binding protein TLS/FUS. Clinical correlation and in vitro transformation assays indicate that the N terminus of TLS plays an important role in oncogenesis by TLS-CHOP. Until now, however, the only activity attributed to the oncoprotein is that of inhibiting the binding of transcription factors of the C/EBP class to certain adipogenic target genes, a function that TLS-CHOP shares with the nononcogenic CHOP protein. Here we report the isolation of a gene, DOL54, that is activated in primary fibroblasts by the expression of TLS-CHOP. DOL54 is expressed in the neoplastic component of human myxoid liposarcomas and increases the tumorigenicity of cells injected in nude mice. Activation of DOL54 requires an intact DNA-binding and dimerization domain in TLS-CHOP, a suitable cellular dimerization partner, and depends on the TLS N terminus. Normal adipocytic differentiation is associated with an early and transient expression of DOL54, and the gene encodes a secreted protein that is tightly associated with the cell surface or extracellular matrix. TLS-CHOP thus leads to the unscheduled expression of a gene that is normally associated with adipocytic differentiation.

Footnotes

  • To whom reprint requests should be addressed. e-mail: ron{at}saturn.med.nyu.edu.

  • This paper was submitted directly (Track II) to the Proceedings Office.

  • Data deposition: The sequence of human DOL54/MSF reported in this paper has been deposited in the GenBank database (accession no. HSU70316).

  • ABBREVIATIONS:
    MEF,
    mouse embryonic fibroblasts;
    RDA,
    representational difference analysis;
    MSF,
    megakaryocyte stimulatory factor;
    CHO,
    Chinese hamster ovary cells
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