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溴化丙锭对酿酒酵母中溴化乙锭诱导小菌落形成的共诱变作用。

Co-mutagenic effects of propidium on petite induction by ethidium in Saccharomyces cerevisiae.

作者信息

Fukunaga M, Yielding K L

出版信息

Mutat Res. 1980 Jan;69(1):43-50. doi: 10.1016/0027-5107(80)90174-8.

Abstract

Propidium, whose structure is closely related to ethidium bromide, induced a low level of petites in yeast, but only at high concentrations with long incubation time, and only in growth medium. When added to growing cells, propidium also caused a large increase in petite induction by ethidium even at submutagenic concentrations of ethidium. Incorporation of adenine into DNA was inhibited by propidium in mitochondria but not in nuclei. Propidium by itself had no effects on fragmentation of pre-existing DNA, but enhanced mitochondrial DNA degradation provoked by ethidium. The proportion of suppressive clones occurring among the petites from ethidium treatment was reduced by the presence of propidium. All of these results indicated that propidium treatment led to degradation of the mitochondrial DNA in petites induced by ethidium but not in native (intact) mitochondrial DNA, nor in spontaneous petite colonies. The results are discussed in terms of possible mechanisms of modulation of petite induction.

摘要

碘化丙啶的结构与溴化乙锭密切相关,它在酵母中诱导出低水平的小菌落,但仅在高浓度且长时间孵育时才会出现,并且仅在生长培养基中如此。当添加到正在生长的细胞中时,即使在亚诱变浓度的溴化乙锭存在下,碘化丙啶也会导致溴化乙锭诱导的小菌落大量增加。腺嘌呤掺入线粒体DNA受到碘化丙啶的抑制,但核DNA不受影响。碘化丙啶本身对预先存在的DNA片段化没有影响,但会增强由溴化乙锭引发的线粒体DNA降解。溴化乙锭处理产生的小菌落中出现的抑制性克隆比例因碘化丙啶的存在而降低。所有这些结果表明,碘化丙啶处理导致由溴化乙锭诱导产生的小菌落中的线粒体DNA降解,但不会导致天然(完整)线粒体DNA或自发小菌落中的线粒体DNA降解。本文从调节小菌落诱导的可能机制方面对结果进行了讨论。

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