The CD155/poliovirus receptor enhances the proliferation of ras-mutated cells
Tokuyuki Kono1, Yasuo Imai, Shin-ichi Yasuda
1Department of Surgical and Molecular Pathology, Dokkyo Medical University School of Medicine, Tochigi, Japan.
Abstract:
Stimulation of the CD155/poliovirus receptor, which localizes in the cell-matrix and at cell-cell junctions, inhibits cell adhesion and enhances cell migration. Necl-5, a mouse homolog of CD155, is implicated in the formation of adherence junctions. Recently, Necl-5 has also been found to enhance cell proliferation via the stimulation of serum and platelet-derived growth factor through the Ras-Raf-MEK-ERK signaling pathway. In our present study, we find that CD155 significantly enhances the serum-induced cell proliferation of NIH3T3 cells which have been transformed by an oncogenic Ras (V12Ras-NIH3T3), but not the parental cells. CD155 expression in V12Ras-NIH3T3 cells is also found to upregulate cyclin D2, downregulate p27(Kip1) and shorten the G0/G1 phase of the cell cycle. An inhibitor of focal adhesion kinase does not reduce this CD155-mediated enhancement of V12Ras-NIH3T3 cell proliferation. The expression of CD155DeltaCP, which lacks the cytoplasmic region including the immunoreceptor tyrosine-based inhibitory motif (ITIM), has a reduced ability to enhance the serum responsiveness of V12Ras-NIH3T3 cells, suggesting that the ITIM might be required for this effect of CD155. In addition, the overexpression of exogenous CD155 enhances the serum responsiveness of HT1080 cells, which harbor a mutant N-ras gene. On the other hand, siRNA-induced knockdown of endogenous CD155 and/or CD155DeltaCP expression significantly repress the serum responsiveness of DLD-1 cells, which express endogenous CD155 and harbor a mutant K-ras gene, suggesting that this mutant may function in a dominant negative manner. Taken together, our present data suggest that CD155, at least in part, enhances the proliferation of ras-mutated cells.
Insights
CD155 enhances the proliferation of cells with ras mutations by upregulating cyclin D2 and shortening the G0/G1 cell cycle phase. This effect is dependent on the immunoreceptor tyrosine-based inhibitory motif (ITIM) within CD155.
Area of Science:
- Cell Biology
- Molecular Biology
- Cancer Research
Background:
- CD155 (poliovirus receptor) influences cell adhesion, migration, and proliferation.
- Necl-5, a CD155 homolog, is involved in adherence junctions and growth factor signaling.
- The Ras-Raf-MEK-ERK pathway is implicated in Necl-5-mediated cell proliferation.
Purpose of the Study:
- To investigate the role of CD155 in the proliferation of ras-mutated cells.
- To determine the signaling mechanisms underlying CD155-enhanced cell proliferation.
- To assess the involvement of the CD155 cytoplasmic region and ITIM in this process.
Main Methods:
- Utilized NIH3T3 cells transformed with oncogenic Ras (V12Ras-NIH3T3) and parental cells.
- Overexpressed exogenous CD155 in HT1080 cells (mutant N-ras).
- Performed siRNA-induced knockdown of CD155 in DLD-1 cells (mutant K-ras).
- Analyzed cell cycle progression (G0/G1 phase), cyclin D2, and p27(Kip1) expression.
- Investigated the role of the immunoreceptor tyrosine-based inhibitory motif (ITIM) using CD155DeltaCP.
Main Results:
- CD155 significantly enhanced serum-induced proliferation in V12Ras-NIH3T3 cells, but not parental cells.
- CD155 upregulated cyclin D2, downregulated p27(Kip1), and shortened the G0/G1 phase in V12Ras-NIH3T3 cells.
- CD155DeltaCP showed reduced ability to enhance serum responsiveness, indicating ITIM involvement.
- Overexpression of CD155 enhanced serum responsiveness in HT1080 cells.
- Knockdown of CD155 repressed serum responsiveness in DLD-1 cells.
Conclusions:
- CD155 enhances the proliferation of ras-mutated cells.
- The ITIM domain of CD155 appears crucial for this proliferative effect.
- CD155 signaling contributes to the aberrant proliferation characteristic of ras-mutated cancers.
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