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Updated: Aug 11, 2026

RhoC GTPase Activation Assay
Published on: August 23, 2010
Possible involvement of MSX-2 homeoprotein in v-ras-induced transformation
C Takahashi1, N Akiyama, H Kitayama
1Department of Molecular Oncology, Kyoto University School of Medicine, Japan.
Abstract:
A truncated MSX-2 homeoprotein was found to induce flat reversion when expressed in v-Ki-ras-transformed NIH3T3 cells. Although the expression of endogenous MSX-2 gene is low in most of the normal adult tissues examined, it is frequently activated in carcinoma-derived cell lines. Likewise, the gene is inactive in untransformed cells but is transcriptionally activated after transformation by v-Ki-ras oncogene, suggesting that the intact MSX-2 may play a positive, rather than suppressive, role in cell transformation. To test this possibility, we isolated a full-length human MSX-2 cDNA and tested its activities in two cell systems: fibroblast and myoblast. In NIH3T3 fibroblasts, although the gene by itself failed to confer a transformed phenotype, antisense MSX-2 cDNA as well as truncated MSX-2 cDNA interfered with the transforming activities of both v-Ki-ras and v-raf oncogene. In C2C12 myoblasts, MSX-2 was found to suppress MyoD gene expression, as do activated ras oncogenes, under certain culture conditions, and truncated MSX-2 cDNA was found to inhibit the activities of both MSX-2 and ras in this system as well. Our findings not only suggest that the truncated version MSX-2 may act as a dominant suppressor of intact MSX-2 but also raise the possibility that MSX-2 gene may be an important downstream target for the Ras signaling pathways.
Insights
A truncated MSX-2 protein can reverse cancer-like cell changes. The full-length MSX-2 gene may promote cell transformation, potentially as a target of Ras signaling pathways.
Area of Science:
- Molecular Biology
- Cell Biology
- Oncology
Background:
- MSX-2 gene expression is typically low in normal tissues but elevated in carcinomas.
- MSX-2 is transcriptionally activated by v-Ki-ras oncogene in transformed cells.
- Intact MSX-2 might promote, not suppress, cell transformation.
Purpose of the Study:
- Investigate the role of full-length and truncated MSX-2 in cell transformation.
- Determine if MSX-2 is a downstream target of Ras signaling.
- Evaluate MSX-2's function in fibroblast and myoblast cell systems.
Main Methods:
- Expression of full-length, truncated, and antisense MSX-2 cDNA in NIH3T3 fibroblasts and C2C12 myoblasts.
- Assessing the effects on cell transformation phenotypes.
- Analyzing MyoD gene expression in C2C12 myoblasts.
Main Results:
- Truncated MSX-2 induced flat reversion in v-Ki-ras-transformed cells.
- Antisense and truncated MSX-2 interfered with v-Ki-ras and v-raf oncogene transforming activities in fibroblasts.
- MSX-2 suppressed MyoD gene expression in myoblasts; truncated MSX-2 inhibited both MSX-2 and Ras activity.
Conclusions:
- Truncated MSX-2 may act as a dominant suppressor of intact MSX-2.
- MSX-2 could be a downstream target of Ras signaling pathways.
- MSX-2's role in cell transformation and its regulation by oncogenes warrant further investigation.
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