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Interleukin-6 promotes multiple myeloma cell growth via phosphorylation of retinoblastoma protein
M Urashima1, A Ogata, D Chauhan
1Division of Hematologic Malignancies, Dana-Farber Cancer Institute, Boston, MA 02215, USA.
Abstract:
Interleukin-6 (IL-6) mediates autocrine and paracrine growth of multiple myeloma (MM) cells and inhibits tumor cell apoptosis. Abnormalities of retinoblastoma protein (pRB) and mutations of RB gene have been reported in up to 70% of MM patients and 80% of MM-derived cell lines. Because dephosphorylated (activated) pRB blocks transition from G1 to S phase of the cell cycle whereas phosphorylated (inactivated) pRB releases this growth arrest, we characterized the role of pRB in IL-6-mediated MM cell growth. Both phosphorylated and dephosphorylated pRB were expressed in all serum-starved MM patient cells and MM-derived cell lines, but pRB was predominantly in its phosphorylated form. In MM cells that proliferated in response to IL-6, exogenous IL-6 downregulated dephosphorylated pRB and decreased dephosphorylated pRB-E2F complexes. Importantly, culture of MM cells with RB antisense, but not RB sense, oligonucleotide (ODN) triggered IL-6 secretion and proliferation in MM cells; however, proliferation was only partially inhibited by neutralizing anti-IL-6 monoclonal antibody (MoAb). In contrast to MM cells, normal splenic B cells express dephosphorylated pRB. Although CD40 ligand (CD40L) triggers a shift from dephosphorylated to phosphorylated pRB and proliferation of B cells, the addition of exogenous IL-6 to CD40L-treated B cells does not alter either pRB or proliferation, as observed in MM cells. These results suggest that phosphorylated pRB is constitutively expressed in MM cells and that IL-6 further shifts pRB from its dephosphorylated to its phosphorylated form, thereby promoting MM cell growth via two mechanisms; by decreasing the amount of E2F bound by dephosphorylated pRB due to reduced dephosphorylated pRB, thereby releasing growth arrest; and by upregulating IL-6 secretion by MM cells and related IL-6-mediated autocrine tumor cell growth.
Insights
Interleukin-6 (IL-6) promotes multiple myeloma (MM) cell growth by inactivating retinoblastoma protein (pRB). This leads to cell cycle progression and increased IL-6 secretion, driving further MM proliferation.
Area of Science:
- Oncology
- Molecular Biology
- Cell Cycle Regulation
Background:
- Multiple myeloma (MM) cells rely on Interleukin-6 (IL-6) for growth and survival, inhibiting apoptosis.
- Retinoblastoma protein (pRB) and its gene (RB) are frequently altered in MM, impacting cell cycle control.
- Dephosphorylated pRB halts cell cycle progression, while phosphorylated pRB permits it.
Purpose of the Study:
- To investigate the role of pRB in IL-6-mediated growth of multiple myeloma cells.
- To elucidate the interplay between IL-6 signaling and pRB phosphorylation status in MM.
Main Methods:
- Analysis of pRB phosphorylation states in MM cells and cell lines.
- Assessment of IL-6 effects on pRB and E2F complex formation.
- Use of RB antisense oligonucleotides (ODN) to study IL-6 secretion and proliferation.
- Comparison with normal splenic B cells and their response to CD40 ligand (CD40L) and IL-6.
Main Results:
- MM cells predominantly express phosphorylated pRB, with IL-6 further reducing dephosphorylated pRB and pRB-E2F complexes.
- RB antisense ODN induced IL-6 secretion and proliferation in MM cells, partially blocked by anti-IL-6 antibodies.
- Normal B cells, expressing dephosphorylated pRB, proliferate upon CD40L stimulation without altered pRB or proliferation by exogenous IL-6.
Conclusions:
- Constitutively phosphorylated pRB in MM cells, further promoted by IL-6, drives MM cell proliferation.
- IL-6 enhances MM growth by reducing dephosphorylated pRB, thus releasing cell cycle arrest, and by upregulating autocrine IL-6 secretion.