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Phosphoprotein profiles of candidate markers for early cellular responses to low-dose γ-radiation in normal human fibroblast cells

机译:正常人成纤维细胞对低剂量γ射线早期细胞应答的候选标记的磷酸蛋白谱

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摘要

Ionizing radiation causes biological damage that leads to severe health effects. However, the effects and subsequent health implications caused by exposure to low-dose radiation are unclear. The objective of this study was to determine phosphoprotein profiles in normal human fibroblast cell lines in response to low-dose and high-dose γ-radiation. We examined the cellular response in MRC-5 cells 0.5 h after exposure to 0.05 or 2 Gy. Using 1318 antibodies by antibody array, we observed ≥1.3-fold increases in a number of identified phosphoproteins in cells subjected to low-dose (0.05 Gy) and high-dose (2 Gy) radiation, suggesting that both radiation levels stimulate distinct signaling pathways. Low-dose radiation induced nucleic acid–binding transcription factor activity, developmental processes, and multicellular organismal processes. By contrast, high-dose radiation stimulated apoptotic processes, cell adhesion and regulation, and cellular organization and biogenesis. We found that phospho-BTK (Tyr550) and phospho-Gab2 (Tyr643) protein levels at 0.5 h after treatment were higher in cells subjected to low-dose radiation than in cells treated with high-dose radiation. We also determined that the phosphorylation of BTK and Gab2 in response to ionizing radiation was regulated in a dose-dependent manner in MRC-5 and NHDF cells. Our study provides new insights into the biological responses to low-dose γ-radiation and identifies potential candidate markers for monitoring exposure to low-dose ionizing radiation.
机译:电离辐射会导致生物危害,从而严重危害健康。然而,由于暴露于低剂量辐射而产生的影响及其对健康的影响尚不清楚。这项研究的目的是确定响应于低剂量和高剂量γ辐射的正常人成纤维细胞细胞系中的磷蛋白谱。我们在暴露于0.05或2 Gy后0.5小时检查了MRC-5细胞的细胞反应。通过抗体阵列使用1318抗体,我们观察到低剂量(0.05 Gy)和高剂量(2 Gy)辐射的细胞中鉴定出的磷蛋白数量增加了1.3倍以上,表明这两种辐射水平均刺激了不同的信号通路。低剂量辐射诱导核酸结合转录因子活性,发育过程和多细胞生物过程。相比之下,大剂量辐射刺激细胞凋亡过程,细胞粘附和调节以及细胞组织和生物发生。我们发现,低剂量辐射的细胞在处理后0.5小时的磷酸-BTK(Tyr550)和磷酸-Gab2(Tyr643)蛋白水平高于高剂量辐射处理的细胞。我们还确定,在MRC-5和NHDF细胞中,BTK和Gab2响应电离辐射的磷酸化受到剂量依赖性的调节。我们的研究为对低剂量γ辐射的生物学反应提供了新的见解,并确定了潜在的候选标记物,可用于监测低剂量电离辐射的暴露。

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