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Transcription and activity of antioxidant enzymes after ionizing irradiation in radiation-resistant and radiation-sensitive mice

机译:抗辐射和辐射敏感小鼠电离辐射后抗氧化酶的转录和活性

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摘要

The involvement of the antioxidant enzymes superoxide dismutase (SOD), catalase (CAT), and glutathione peroxidase in radiobiological processes has been described at the enzyme activity level. We irradiated radiation-resistant (RR) and radiation-sensitive (RS) mice and studied antioxidant enzymes at the transcriptional and activity level. In addition, aromatic hydroxylation and lipid peroxidation parameters were determined to study radiation resistance at the oxidation level. RS BALB/c/J Him mice and RR C3H He/Him mice were whole-body-irradiated with x-rays at 2, 4, and 6 Gy and killed 5, 15, and 30 min after irradiation. mRNA was isolated from liver and hybridized with probes for antioxidant enzymes and β-actin as a housekeeping gene control. Antioxidant enzyme activities were determined by standard assays. Parameters for aromatic hydroxylation (o-tyrosine) and lipid peroxidation (malondialdehyde) were determined by HPLC methods. Antioxidant transcription was unchanged in contrast to antioxidant activities; SOD and CAT activities were elevated within 15 min in RR animals but not in RS mice, at all doses studied. Glutathione peroxidase activity was not different between RR and RS mice and was only moderately elevated after irradiation. No significant differences were found between RR and RS animals at the oxidation level, although a radiation dose-dependent increase of oxidation products was detected in both groups. We found that ionizing irradiation led to increased antioxidant activity only minutes after irradiation in the absence of increased transcription of these antioxidant enzymes. RR animals show higher antioxidant enzyme activities than do RS mice, but oxidation products are comparable in RS and RR mice. As unchanged transcription of antioxidant enzymes could not have been responsible for the increased antioxidant enzyme activities, preformed antioxidant enzymes should have been released by the irradiation process. This would be in agreement with previous studies of preformed, stored SOD. The finding of higher SOD and CAT activities in RR than in RS animals could point to a role for these antioxidant enzymes for the process of radiation sensitivity.
机译:已经在酶活性水平上描述了抗氧化酶超氧化物歧化酶(SOD),过氧化氢酶(CAT)和谷胱甘肽过氧化物酶与放射生物学过程的关系。我们照射了抗辐射(RR)和辐射敏感(RS)小鼠,并在转录和活性水平研究了抗氧化酶。另外,确定芳族羟基化和脂质过氧化参数以研究在氧化水平下的抗辐射性。用2、4、6 Gy的x射线对RS BALB / c / J Him小鼠和RR C3H He / Him小鼠进行全身照射,并在照射后5、15和30分钟处死。从肝脏中分离出mRNA,并与抗氧化酶探针和β-肌动蛋白杂交作为管家基因对照。通过标准测定法确定抗氧化酶活性。通过HPLC方法测定芳族羟基化(邻酪氨酸)和脂质过氧化(丙二醛)的参数。与抗氧化活性相反,抗氧化转录没有变化。在所有研究剂量下,RR动物中15分钟内SOD和CAT活性均升高,而RS小鼠中SOD和CAT活性均未升高。谷胱甘肽过氧化物酶活性在RR和RS小鼠之间没有差异,并且在辐照后仅适度升高。虽然在两组中均检测到辐射剂量依赖性氧化产物的增加,但在氧化水平上,RR和RS动物之间没有发现显着差异。我们发现电离辐射导致辐射后仅几分钟的时间内抗氧化活性增加,而这些抗氧化酶的转录没有增加。 RR动物显示出比RS小鼠更高的抗氧化酶活性,但在RS和RR小鼠中氧化产物具有可比性。由于抗氧化酶的不变转录可能不是抗氧化酶活性增加的原因,因此预先形成的抗氧化酶应该在辐射过程中释放出来。这将与先前对预先存储的SOD的研究相一致。在RR中发现较高的SOD和CAT活性比在RS动物中发现更高,这可能表明这些抗氧化酶在辐射敏感性过程中发挥了作用。

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