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I-κBα的翻译后修饰在暴露于56Fe离子的人单核细胞中激活核因子κB。

Post-translational modification of I-kappa B alpha activates NF-kappa B in human monocytes exposed to 56Fe ions.

作者信息

Natarajan Mohan, Aravindan N, Meltz M L, Herman T S

机构信息

Department of Radiation Oncology, University of Texas Health Science Center, 7703 Floyd Curl Drive, San Antonio, TX 78229-3900, USA.

出版信息

Radiat Environ Biophys. 2002 Jun;41(2):139-44. doi: 10.1007/s00411-002-0143-x.

Abstract

The objective of this study was to investigate whether heavy ion (56Fe) radiation exposure activates one of the key transcriptional regulators, nuclear factor-kappa B (NF-kappa B), in normal human monocytes (Mono Mac 6 cells: MM6). The study revealed that the exposure of MM6 cells to 56Fe ions resulted in increased NF-kappa B DNA-binding activity. The activation was both dose- and time-dependent, with a maximum response at the 2 h time point after a 0.7 Gy dose. Cells pre-incubated with inhibitors of the phosphorylation and proteasome signaling pathway, completely blocked heavy ion-induced activation of NF-kappa B. These results clearly indicate that 56Fe ions can induce NF-kappa B DNA-binding activity in normal human monocytes, that the activation is rapid and persistent, and that the heavy ion-induced activation of NF-kappa B is mediated through phosphorylation of I-kappa B alpha and the subsequent proteasome-dependent degradation pathway. Since activation of NF-kappa B by extracellular stimuli is implicated in inflammation, infection and cancer induction, as well as in protection of cells against insult, it will be important in subsequent studies to elucidate whether heavy ion-induced NF-kappa B activation is involved in downstream gene expression.

摘要

本研究的目的是调查重离子(56Fe)辐射暴露是否会激活正常人单核细胞(Mono Mac 6细胞:MM6)中关键的转录调节因子之一——核因子-κB(NF-κB)。该研究表明,MM6细胞暴露于56Fe离子会导致NF-κB DNA结合活性增加。这种激活具有剂量和时间依赖性,在0.7 Gy剂量后2小时时间点出现最大反应。用磷酸化和蛋白酶体信号通路抑制剂预孵育的细胞,完全阻断了重离子诱导的NF-κB激活。这些结果清楚地表明,56Fe离子可在正常人单核细胞中诱导NF-κB DNA结合活性,这种激活迅速且持续,并且重离子诱导的NF-κB激活是通过I-κBα的磷酸化和随后的蛋白酶体依赖性降解途径介导的。由于细胞外刺激激活NF-κB与炎症、感染和癌症诱导以及细胞对损伤的保护有关,因此在后续研究中阐明重离子诱导的NF-κB激活是否参与下游基因表达将很重要。

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