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.

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