Gamma irradiation up-regulates expression of B cell differentiation molecule CD23 by NF-kappaB activation
Hyun-Sook Rho1, Soon-Suk Park, Choong-Eun Lee
1Laboratory of Immunology, Department of Biological Science, Sungkyunkwan University, Suwon 440-746, Korea.
Insights
Low-dose gamma irradiation (gamma-IR) activates NF-kappaB, a key signaling pathway. This activation upregulates CD23 expression, a B cell differentiation molecule, influencing immune responses.
Area of Science:
- Immunology
- Radiation Biology
- Molecular Biology
Background:
- Gamma irradiation (gamma-IR) exhibits varied effects on immune cells.
- Understanding the precise mechanisms of gamma-IR's immunomodulatory impact is crucial.
Purpose of the Study:
- To investigate the immunomodulatory effects of low-dose gamma-IR (5-10 Gy).
- To elucidate the role of Nuclear Factor kappa B (NF-kappaB) in gamma-IR-induced B cell differentiation molecule CD23/FceRII expression.
Main Methods:
- Utilized human B cell line (Ramos) and monocytic cells.
- Assessed CD23 expression and NF-kappaB activation (DNA binding, transcriptional activity).
- Employed NF-kappaB inhibitors (PDTC, MG132) and Ras signaling modulation.
Main Results:
- Low-dose gamma-IR induced CD23 expression and augmented IL-4-induced CD23 levels in Ramos cells.
- Gamma-IR activated NF-kappaB in an IkappaB degradation-dependent manner, independent of STAT6.
- NF-kappaB inhibition suppressed gamma-IR-mediated CD23 expression, while Ras potentiation further increased it.
- Similar NF-kappaB activation and CD23 up-regulation were observed in monocytic cells.
Conclusions:
- Low-dose gamma-IR modulates immune cell differentiation via NF-kappaB activation.
- This modulation of CD23 expression may impact cytokine-mediated immune inflammatory responses.
Abstract:
Gamma irradiation (gamma-IR) is reported to have diverse effects on immune cell apoptosis, survival and differentiation. In the present study, the immunomodulatory effect of a low dose gamma-IR (5~10 Gy) was investigated, focusing on the role of NF-kappaB in the induction of the B cell differentiation molecule, CD23/FceRII. In the human B cell line Ramos, gamma-IR not only induced CD23 expression, but also augmented the IL-4-induced surface CD23 levels. While gamma-IR did not cause STAT6 activation in these cells, it did induce both DNA binding and the transcriptional activity of NF-kappaB in the IkappaB degradation-dependent manner. It was subsequently found that different NF-kappaB regulating signals modulated the gamma-IR-or IL-4-induced CD23 expression. Inhibitors of NF-kappaB activation, such as PDTC and MG132, suppressed the gamma-IR-mediated CD23 expression. In contrast, Ras, which potentiates gamma-IR-induced NF-kappaB activity in these cells, further augmented the gamma-IR- or IL-4-induced CD23 levels, The induction of NF-kappaB activation and the subsequent up-regulation of CD23 expression by gamma-IR were also observed in monocytic cells. These results suggest that gamma-IR, at specific dosages, can modulate immune cell differentiation through the activation of NF-kappaB, and this potentially affects the immune inflammatory response that is mediated by cytokines.
Related Concept Videos
NF-κB-dependent Signaling Pathway
NF-κB-dependent Signaling Mechanism
The heterodimer of NF-κB...
Abnormal Proliferation
Receptor Downregulation in MVBs
The EGFR can initiate signaling pathways that lead to cell proliferation, migration, and differentiation. Overexpression of EGFR stimulates cells to proliferate. Excessive EGFR activation may...


