Zebularin'in Antioksidan Enzimleri ve Galleria mellonella (Lepidoptera: Pyralidae) Lipit Peroksidasyonu Üzerindeki Etkisi

Ebru Çakir, Fevzi Uçkan, Ekrem Ergi̇n, R. Özbek
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Abstract

Cytosine methylation is a process that adds a methyl group to a cytosine residue of DNA to convert it to 5-methylcytosine. Zebularine (ZEB) reactivates hypermethylated genes in yeast and solid tumor cells, with DNA methyltransferases that show a preferential effect on cancer cells. We investigated the effects of various doses (0.25-32 mg/ml) of ZEB, on antioxidant enzyme activity and lipid peroxidation in wax moth Galleria mellonella last instars. Injection of ZEB in last instars G. mellonella resulted in increases in SOD, MDA, and GST levels, in order of magnitude, but not in CAT enzyme activity. Two possible reasons were predicted for these results. This effect could be a result of the inhibitory effect of ZEB on DNA methylation in G. mellonella, which leaded to reducing gene transcription in insects. Or it was likely that high oxidative stress might cause a decreasing activity of enzymes.
胞嘧啶甲基化是在DNA的胞嘧啶残基上加入甲基,使其转化为5-甲基胞嘧啶的过程。Zebularine (ZEB)可激活酵母和实体肿瘤细胞中的高甲基化基因,其DNA甲基转移酶对癌细胞具有优先作用。研究了不同剂量(0.25 ~ 32 mg/ml)的ZEB对蜡蛾末龄抗氧化酶活性和脂质过氧化的影响。注射ZEB可使末龄大鼠血清SOD、MDA和GST水平呈数量级升高,但对CAT酶活性无显著影响。对于这些结果,预测了两个可能的原因。这种效应可能是由于ZEB对大棉铃虫DNA甲基化的抑制作用,导致昆虫基因转录减少。或者,高氧化应激可能会导致酶的活性降低。
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