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Induction of 2.5 OAS gene expression and activity is not sufficient for IFN-gamma-induced neuroblastoma cell
M V Corrias1, G Gribaudo, F Guarnaccia
1Laboratory of Oncology, G Gaslini Children's Hospital, Genoa, Italy.
Abstract:
We showed earlier that interferon-gamma is a powerful inducer of differentiation of human neuroblastoma (NB) cells. Although 2',5' oligo-adenylate synthetase (2,5 OAS) may play a role in mediating the anti-proliferative and/or differentiative effects of interferons (IFNs), direct evidence is lacking. We have investigated gene and protein expression of the 4 different 2,5 OAS isoforms and their cumulative enzymatic activity in a previously characterized IFN-gamma-sensitive human NB cell line, LAN-5. Analysis of total and poly(A)+ RNA by Northern blot and RT-PCR indicated that expression of the mRNA coding for the 40-, 46-and 69-kDa isoforms was induced in a time- and dose-dependent manner, reaching a maximum after a 36-hr treatment with 1000 IU/ml of IFN-gamma. In the absence of treatment, only the mRNA for the 69-kDa isoform was detectable by RT-PCR. Inhibition of transcription with actinomycin D showed that 2,5 OAS mRNA was quite stable, with a half-life of about 4 hr. With respect to the protein content, no 2,5 OAS isoform was present in proliferating LAN-5 cells; following IFN-gamma treatment, the 100-, 69-and 46-kDa isoforms became detectable. Accordingly, 2,5 OAS enzymatic activity, virtually undetectable in untreated LAN-5 cells, increased up to 132 pmol oligoadenylate/micrograms protein/hr after 48 hr of treatment, then slowly decreased, remaining detectable up to 96 hr. However, the 2,5 OAS proteins required an exogenous activation by synthetic dsRNA to exert enzymatic activity. It is therefore conceivable that they do not play a biological role in NB cell functions. Moreover, an increase in 2,5 OAS enzymatic activity was also observed in NB cells resistant to the differentiation-promoting activity of IFN-gamma, further suggesting that 2,5 OAS induction was not sufficient to trigger IFN-gamma-dependent neuronal maturation. Furthermore, other differentiation-inducing agents, such as retinoic acid and cytosine arabinoside, or complete proliferative arrest produced by serum deprivation, failed to enhance 2,5 OAS activity, thus indicating that the 2,5 OAS system is not directly involved in mediating other differentiative pathways of NB cells.
Insights
Interferon-gamma induces differentiation in neuroblastoma cells, but the 2
Area of Science:
- Molecular Biology
- Cell Biology
- Cancer Research
Background:
- Interferon-gamma (IFN-γ) is a known inducer of differentiation in human neuroblastoma (NB) cells.
- The role of 2',5'-oligoadenylate synthetase (2,5 OAS) in mediating IFN-γ effects on NB cells remains unclear.
Purpose of the Study:
- To investigate the expression and activity of 2,5 OAS isoforms in response to IFN-γ in human neuroblastoma cells.
- To determine if 2,5 OAS plays a role in IFN-γ-induced neuroblastoma differentiation.
Main Methods:
- Human neuroblastoma (LAN-5) cells were treated with IFN-γ.
- Gene and protein expression of 2,5 OAS isoforms were analyzed using Northern blot and RT-PCR.
- 2,5 OAS enzymatic activity was measured.
- Effects of other differentiation agents and cell cycle arrest were assessed.
Main Results:
- IFN-γ treatment time- and dose-dependently induced mRNA and protein expression of 40-, 46-, and 69-kDa 2,5 OAS isoforms.
- 2,5 OAS enzymatic activity increased significantly after IFN-γ treatment but required exogenous activation.
- 2,5 OAS induction occurred even in IFN-γ-resistant NB cells and was not observed with other differentiation agents.
Conclusions:
- The 2,5 OAS system is not directly involved in mediating IFN-γ-induced neuroblastoma differentiation.
- 2,5 OAS induction alone is insufficient to trigger neuronal maturation in neuroblastoma cells.
- The biological role of 2,5 OAS in neuroblastoma cell functions remains uncertain due to the requirement for exogenous activation.