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首页> 外文期刊>Molecular biology of the cell >Characterization of DNA Damage in Yeast Apoptosis Induced by Hydrogen Peroxide, Acetic Acid, and Hyperosmotic Shock
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Characterization of DNA Damage in Yeast Apoptosis Induced by Hydrogen Peroxide, Acetic Acid, and Hyperosmotic Shock

机译:过氧化氢,乙酸和高血白休克诱导酵母细胞凋亡中DNA损伤的表征

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摘要

Saccharomyces cerevisiae has been reported to die, under certain conditions, from programmed cell death with apoptotic markers. One of the most important markers is chromosomal DNA fragmentation as indicated by terminal deoxynucleotidyl transferase dUTP nick-end labeling (TUNEL) staining. We found TUNEL staining in S. cerevisiae to be a consequence of both single- and double-strand DNA breaks, whereas in situ ligation specifically stained double-strand DNA breaks. Cells treated with hydrogen peroxide or acetic acid staining positively for TUNEL assay stained negatively for in situ ligation, indicating that DNA damage in both cases mainly consists of single-strand DNA breaks. Pulsed field gel electrophoresis of chromosomal DNA from cells dying from hydrogen peroxide, acetic acid, or hyperosmotic shock revealed DNA breakdown into fragments of several hundred kilobases, consistent with the higher order chromatin degradation preceding DNA laddering in apoptotic mammalian cells. DNA fragmentation was associated with death by treatment with 10 mM hydrogen peroxide but not 150 mM and was absent if cells were fixed with formaldehyde to eliminate enzyme activity before hydrogen peroxide treatment. These observations are consistent with a process that, like mammalian apoptosis, is enzyme dependent, degrades chromosomal DNA, and is activated only at low intensity of death stimuli.
机译:据报道,酿酒酵母在某些条件下据报道,从细胞凋亡标志物到某些条件下死亡。最重要的标记之一是染色体DNA碎片,如末端脱氧核苷酸转移酶DUTP乳糜蛋白贴标签(TUNEL)染色所示。我们发现在酿酒酵母中的TUNEL染色是单链和双链DNA断裂的结果,而原位连接特异性染色双链DNA断裂。用过氧化氢或乙酸处理的细胞对于TUNEL测定为原位连接染色,表明两种情况下的DNA损伤主要由单链DNA断裂组成。来自过氧化氢的细胞的染色体DNA的脉冲场凝胶电泳,乙酸或高骨肉冲击将DNA分解显示为数百千碱基的碎片,与凋亡哺乳动物细胞中的DNA梯形阶梯的高阶染色质降解一致。通过用10mM氢过氧化氢处理但不含150mm,并且如果用甲醛固定,则没有150mm,以消除过氧化氢处理前的酶活性,则不存在。这些观察结果与哺乳动物细胞凋亡的过程一致,例如酶依赖性,降解染色体DNA,并且仅在低强度的死亡刺激下激活。

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