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Published on: February 28, 2019
MHC class II transactivator (CIITA) expression is upregulated in multiple myeloma cells by IFN-gamma
Mojun Zhao1, Frederick L Flynt, Mei Hong
1Division of Basic Medical Sciences, Mercer University School of Medicine, 1550 College Street, Macon, GA 31207, USA.
Insights
Interferon-gamma (IFN-γ) can enhance Major Histocompatibility Complex (MHC) class II expression in multiple myeloma cells by upregulating the CIITA type IV promoter (pIV). This occurs despite the presence of PRDI-BF1/Blimp-1, a repressor of CIITA expression.
Area of Science:
- Immunology
- Molecular Biology
- Oncology
Background:
- The Major Histocompatibility Complex (MHC) class II transactivator (CIITA) is crucial for MHC class II gene expression.
- MHC class II expression on multiple myeloma cells is vital for antigen presentation and immune recognition.
- IFN-γ typically regulates CIITA via the CIITA type IV promoter (pIV) in B lymphocytes.
Purpose of the Study:
- To investigate the regulation of CIITA by IFN-γ in multiple myeloma cells.
- To determine if multiple myeloma cells can respond to IFN-γ treatment.
- To elucidate the mechanisms by which IFN-γ influences CIITA and MHC II expression in myeloma.
Main Methods:
- Reverse transcription-polymerase chain reaction (RT-PCR) to assess gene expression (IFN-γR1, IRF-1).
- Western blotting to detect protein activation (STAT1 phosphorylation).
- Functional promoter analyses and in vivo/in vitro DNA-protein binding studies to examine CIITA pIV activity and transcription factor binding.
Main Results:
- Multiple myeloma cells express IFN-γ receptor 1 (IFN-γR1) and respond to IFN-γ by increasing IRF-1 expression and activating STAT1.
- IFN-γ upregulates CIITA pIV activity, with evidence of IRF-1 and IRF-2 binding to specific sites (GAS, E box, IRF-E).
- Despite PRDI-BF1/Blimp-1 expression, which represses CIITA promoters, IFN-γ treatment enhances CIITA pIV and MHC II expression.
Conclusions:
- Multiple myeloma cells retain the capacity to upregulate CIITA pIV and MHC II expression in response to IFN-γ.
- PRDI-BF1/Blimp-1 diminishes basal antigen-presenting ability by limiting CIITA and MHC II expression.
- Cytokine therapy, such as with IFN-γ, can potentially enhance antigen presentation in multiple myeloma.
Abstract:
The MHC class II transactivator (CIITA) acts in the cell nucleus as the master regulator of MHC class II (MHC II) gene expression. It is important to study CIITA regulation in multiple myeloma since MHC expression is central to ability of myeloma cells to present antigen and to the ability of the immune system to recognize and destroy this malignancy. Regulation of CIITA by IFN-gamma in B lymphocytes occurs through the CIITA type IV promoter (pIV), one of the four potential promoters (pI-pIV) of this gene. To investigate regulation of CIITA by IFN-gamma in multiple myeloma cells, first the ability of these cells to respond to IFN-gamma was examined. RT-PCR analyses show that IFN-gammaR1, the IFN-gamma-binding chain of the IFN-gamma receptor, is expressed in myeloma cells and IRF-1 expression increases in response to IFN-gamma treatment. Western blotting demonstrates that STAT1 is activated by phosphorylation in response to IFN-gamma. RT-PCR and functional promoter analyses show that IFN-gamma upregulates the activity of CIITA pIV, as does ectopic expression of IRF-1 or IRF-2. In vivo protein/DNA binding studies demonstrate protein binding at the GAS, E box and IRF-E sites. In vitro studies confirm the binding of IRF-1 and IRF-2 to CIITA pIV. Although multiple myeloma cells express PRDI-BF1/Blimp-1, a factor that represses both the CIITA type III and IV promoters, they retain the capability to upregulate CIITA pIV and MHC II expression in response to IFN-gamma treatment. These findings are the first to demonstrate that although PRDI-BF1/Blimp-1 diminishes the constitutive ability of these cells to present antigen by limiting CIITA and MHC II expression, it is possible to enhance this expression through the use of cytokines, like IFN-gamma.
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