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Research Article

Characterization of the human c-fms gene product and its expression in cells of the monocyte-macrophage lineage.

J Woolford, V Rothwell, L Rohrschneider
J Woolford
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V Rothwell
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L Rohrschneider
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DOI: 10.1128/MCB.5.12.3458
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ABSTRACT

The McDonough strain of feline sarcoma virus contains an oncogene called v-fms whose ultimate protein product (gp140v-fms) resembles a cell surface growth factor receptor. To identify and characterize the protein product of the proto-oncogene c-fms, antisera were prepared to the viral fms sequences and used to detect specific cross-reacting sequences in human choriocarcinoma cells (BeWo) known to express c-fms mRNA. Both tumor-bearing rat sera and a rabbit antiserum prepared to a segment of v-fms expressed in Escherichia coli detected a 140-kilodalton (kDa) glycoprotein in the BeWo cells. Tryptic fingerprint analysis of [35S]methionine-labeled proteins indicated that the viral fms proteins and the 140-kDa BeWo cell protein were highly related. This 140-kDa glycoprotein contained an associated tyrosine kinase activity in vitro and was labeled principally on serine after 32Pi metabolic labeling. These results suggest that the 140-kDa protein in BeWo cells is the protein product of the human c-fms proto-oncogene. This conclusion is supported by the finding that a similar protein is detectable only in other human cells that express c-fms mRNA. These other human cells include adherent monocytes and the cell line ML-1, which can be induced to differentiate along the monocyte-macrophage pathway. This is in agreement with current thought that the c-fms proto-oncogene product functions as the CSF-1 receptor specific to this pathway.

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Characterization of the human c-fms gene product and its expression in cells of the monocyte-macrophage lineage.
J Woolford, V Rothwell, L Rohrschneider
Molecular and Cellular Biology Dec 1985, 5 (12) 3458-3466; DOI: 10.1128/MCB.5.12.3458

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Characterization of the human c-fms gene product and its expression in cells of the monocyte-macrophage lineage.
J Woolford, V Rothwell, L Rohrschneider
Molecular and Cellular Biology Dec 1985, 5 (12) 3458-3466; DOI: 10.1128/MCB.5.12.3458
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