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首页> 外文期刊>Journal of Radiation Research: Official Organ of the Japan Radiation Research Society >Inverse dose-rate-effects on the expressions of extra-cellular matrix-related genes in low-dose-rate gamma-ray irradiated murine cells
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Inverse dose-rate-effects on the expressions of extra-cellular matrix-related genes in low-dose-rate gamma-ray irradiated murine cells

机译:剂量率反演对低剂量伽马射线辐照鼠细胞中细胞外基质相关基因表达的影响

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摘要

Based on the results of previous microarray analyses of murine NIH3T3/PG13Luc cells irradiated with continuous low-dose-rate (LDR) gamma-ray or end-high-dose-rate-irradiations (end-HDR) at the end of the LDR-irradiation period, the inverse dose-rate-effects on gene expression levels were observed. To compare differences of the effects between LDR-irradiation and HDR-irradiation, HDR-irradiations at 2 different times, one (ini-HDR) at the same time at the start of LDR-irradiation and the other (end-HDR), were performed. The up-regulated genes were classified into two types, in which one was up-regulated in LDR-, ini-HDR-, and end-HDR irradiation such as Cdkn1a and Ccng1, which were reported as p53-dependent genes, and the other was up-regulated in LDR- and ini-HDR irradiations such as pro-collagen TypeIa2/Col1a2, TenascinC/Tnc, and Fibutin5/Fbln5, which were reported as extra-cellular matrix-related (ECM) genes. The time dependent gene expression patterns in LDR-irradiation were also classified into two types, in which one was an early response such as in Cdkn1a and Ccng1 and the other was a delayed response such as the ECM genes which have no linearity to total dose. The protein expression pattern of Cdkn1a increased dose dependently in LDR- and end-HDR-irradiations, but those of p53Ser15/18 and MDM2 in LDR-irradiations were different from end-HDR-irradiations. Furthermore, the gene expression levels of the ECM genes in embryonic fibroblasts from p53-deficient mice were not increased by LDR and end-HDR-irradiation, so the delayed expressions of the ECM genes seem to be regulated by p53. Consequently, the inverse dose-rate-effects on the expression levels of the ECM genes in LDR- and end-HDR irradiations may be explained from different time responses by p53 status.
机译:根据先前的微阵列分析结果,在LDR-末端用连续低剂量率(LDR)γ射线或最终高剂量率辐射(end-HDR)照射的鼠NIH3T3 / PG13Luc细胞辐照期间,观察到剂量率对基因表达水平的反作用。为了比较LDR辐照和HDR辐照之间的效果差异,分别在两个不同的时间进行HDR辐照,分别在LDR辐照开始时同时进行一次(ini-HDR),而在另一时间(结束HDR)进行HDR辐照。执行。上调的基因分为两种类型,其中一种在LDR-,ini-HDR-和最终HDR辐射中上调,例如Cdkn1a和Ccng1,据报道它们是p53依赖性基因,另一种在LDR和ini-HDR辐射(例如前胶原Type1a2 / Col1a2,TenascinC / Tnc和Fibutin5 / Fbln5)中被上调,据报道它们是细胞外基质相关(ECM)基因。 LDR照射中的时间依赖性基因表达模式也分为两种类型,一种是早期反应,例如Cdkn1a和Ccng1,而另一种是延迟反应,例如ECM基因,与总剂量没有线性关系。 Cdkn1a的蛋白质表达模式在LDR和HDR终剂量辐照下剂量依赖性增加,但p53Ser15 / 18和MDM2在LDR辐照中的表达模式与HDR终辐照不同。此外,p53缺陷小鼠胚胎成纤维细胞中ECM基因的基因表达水平并未受到LDR和HDR末端照射的影响,因此ECM基因的延迟表达似乎受到p53的调控。因此,可以通过p53状态的不同时间响应来解释在LDR和HDR终末照射中ECM基因表达水平的剂量率反比效应。

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