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γ射线照射后人淋巴细胞中的早期基因表达——一种具有生物剂量测定潜力的基因模式

Early gene expression in human lymphocytes after gamma-irradiation-a genetic pattern with potential for biodosimetry.

作者信息

Turtoi A, Brown I, Oskamp D, Schneeweiss F H A

机构信息

Research Centre Jülich, Department of Safety and Radiation Protection, Laboratory of Radiation Biology, Germany.

出版信息

Int J Radiat Biol. 2008 May;84(5):375-87. doi: 10.1080/09553000802029886.

Abstract

PURPOSE

Identification of early radiation response genes (ERG) in human lymphocytes after gamma-irradiation by using the whole-human-genome DNA-microarrays and the evaluation of their possible role in rapid radiation biodosimetry by applying real-time quantitative polymerase chain reaction (RT-qPCR) methodology for validation in a small group of human individuals.

MATERIALS AND METHODS

Whole blood from a healthy human donor was exposed at 37 degrees C to 137Cs gamma-radiations (absorbed dose: 1-4 Gy). Fifteen minutes following irradiation the lymphocytes were isolated from the blood (for 2 h at 20 degrees C) and their gene expression was investigated using the DNA-microarrays. Subsequently, 14 genes were selected and validated using the TaqMan probes based upon the RT-qPCR assay within a group of 6 human donors.

RESULTS

A dose-related relative change in quantitative gene expression using the DNA-microarray assay was demonstrated in 24 of 102 genes. Up-regulation of expression was observed in 15 genes: CD69 (CD69 molecule), CDKN1A (cyclin-dependent kinase inhibitor 1A), EGR1 (early growth response 1), EGR4 (early growth response 4), FLJ35725 (chromosome 4 ORF 23), hCG2041177 (hCG - human Celera Genome), hCG1643466.2, IFN-gamma (interferon-gamma), ISG20L (interferon stimulated exonuclease gene 20 kDa - like 1), c-JUN (jun oncogene), MDM2 (mouse double minute 2), MUC5B (mucine), PLK2 (polo-like kinase 2), RND1 (rho-family GTPase 1) and TNFSF9 (tumour necrosis factor superfamily member 9). Down-regulation of expression was found in the remaining nine genes: GRIK3 (glutamate receptor ionotropic kainate 3), hCG1985174, hCG1998530, hCG2038519, OCLN (occludin), RPL10A (ribosomal protein L10a), SERHL2 (serine hydrolase-like 2), SGK3 (serum/glucocorticoid regulated kinase 3) and STARD13 (START domain containing 13).

CONCLUSION

A significant correlation between absorbed radiation dose and change in relative gene expression was particularly evident for EGR1, EGR4, IFN-gamma, c-JUN and TNFSF9 (p < or = 0.05). Results warrant the further investigation of these ERG as potential biodosimetric markers.

摘要

目的

通过使用全人类基因组DNA微阵列鉴定γ射线照射后人淋巴细胞中的早期辐射反应基因(ERG),并通过应用实时定量聚合酶链反应(RT-qPCR)方法在一小群人类个体中进行验证,评估它们在快速辐射生物剂量测定中的可能作用。

材料与方法

将来自健康人类供体的全血在37℃下暴露于137Csγ射线(吸收剂量:1 - 4 Gy)。照射后15分钟,从血液中分离淋巴细胞(在20℃下2小时),并使用DNA微阵列研究其基因表达。随后,选择14个基因并在6名人类供体组成的小组中基于RT-qPCR测定使用TaqMan探针进行验证。

结果

在102个基因中的24个基因中,使用DNA微阵列测定显示了定量基因表达的剂量相关相对变化。在15个基因中观察到表达上调:CD69(CD69分子)、CDKN1A(细胞周期蛋白依赖性激酶抑制剂1A)、EGR1(早期生长反应1)、EGR4(早期生长反应4)、FLJ35725(4号染色体开放阅读框23)、hCG2041177(hCG - 人类赛莱拉基因组)、hCG1643466.2、IFN-γ(干扰素-γ)、ISG20L(干扰素刺激的核酸外切酶基因20 kDa样1)、c-JUN(原癌基因jun)、MDM2(小鼠双微体2)、MUC5B(粘蛋白)、PLK2(polo样激酶2)、RND1(rho家族GTP酶1)和TNFSF9(肿瘤坏死因子超家族成员9)。在其余9个基因中发现表达下调:GRIK3(离子型红藻氨酸盐谷氨酸受体3)、hCG1985174、hCG1998530、hCG2038519、OCLN(闭合蛋白)、RPL10A(核糖体蛋白L10a)、SERHL2(丝氨酸水解酶样2)、SGK3(血清/糖皮质激素调节激酶3)和STARD13(含START结构域13)。

结论

对于EGR1、EGR4、IFN-γ、c-JUN和TNFSF9,吸收辐射剂量与相对基因表达变化之间存在显著相关性(p≤0.05)。结果保证了对这些ERG作为潜在生物剂量测定标志物的进一步研究。

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