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伴随着溴化乙锭诱导的小菌落形成以及呼吸能力恢复的分子和遗传事件。

Molecular and genetic events accompanying petite induction and recovery of respiratory competence induced by ethidium bromide.

作者信息

Criddle R S, Wheelis L

出版信息

Mol Gen Genet. 1976 Mar 30;144(3):263-72. doi: 10.1007/BF00341724.

Abstract

The treatment of yeast cells with high levels of ethidium bromide causes a rapid induction of respiratory deficient mutants followed by a period of recovery to respiratory competence in 60 to 70% of the cells. Prolonged exposure then results in a final irreversible phase of petite formation. Sucrose gradient sedimentation analysis of 3H-adenine labelled mtDNA indicates that limited fragmentation (to about 16-18S) occurs during the initial phase of petite induction followed by a reassembly of the fragments during the period corresponding to the recovery of respiratory competence. The reassembly is associated with an ethidium bromide insensitive incorporation of 3H-adenine into mtDNA at a level consistent with repair synthesis. Genetic analyses, based on the transmission of five markers carried on the mtDNA of "repaired rho+" clones, suggests that reassembly occurs with a high degree of fidelity, though in two of a total of twenty five clones differences in marker transmission frequency were observed which could possibly reflect an altered gene order. In addition, a description is given of the marked changes in the suppressive nature of the treated cells and the temporary reduction in the capacity for marker transmission seen to accompany the transitory fragmentation of the mtDNA. The final phase of petite induction is an energy dependent degradation of the mtDNA to produce a rho degrees culture.

摘要

用高浓度溴化乙锭处理酵母细胞会迅速诱导出呼吸缺陷型突变体,随后60%至70%的细胞会经历一段恢复呼吸能力的时期。长时间暴露随后会导致小菌落形成的最终不可逆阶段。对3H-腺嘌呤标记的线粒体DNA进行蔗糖梯度沉降分析表明,在小菌落诱导的初始阶段会发生有限的片段化(至约16 - 18S),随后在与呼吸能力恢复相对应的时期片段会重新组装。这种重新组装与3H-腺嘌呤以与修复合成一致的水平对线粒体DNA进行溴化乙锭不敏感的掺入有关。基于“修复的rho +”克隆的线粒体DNA上携带的五个标记的传递进行的遗传分析表明,重新组装以高度的保真度发生,尽管在总共25个克隆中有两个克隆观察到标记传递频率的差异,这可能反映了基因顺序的改变。此外,还描述了处理后细胞的抑制性质的显著变化以及伴随线粒体DNA的短暂片段化而出现的标记传递能力的暂时降低。小菌落诱导的最后阶段是线粒体DNA的能量依赖性降解,以产生rho零培养物。

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