Induction of a secreted protein by the myxoid liposarcoma oncogene
- Masahiko Kuroda*,
- XiaoZhong Wang*,
- John Sok*,
- Yin Yin*,
- Peter Chung*,
- JoAnn W. Giannotti†,
- Kenneth A. Jacobs†,
- Lori J. Fitz†,
- Patricia Murtha-Riel†,
- Katherine J. Turner†, and
- David Ron*,‡
- *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
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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
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↵ ‡ To whom reprint requests should be addressed. e-mail: ron{at}saturn.med.nyu.edu.
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This paper was submitted directly (Track II) to the Proceedings Office.
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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
- Copyright © 1999, The National Academy of Sciences





