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umuC基因产物在简单烷基化剂诱变中的作用。

The role of umuC gene product in mutagenesis by simple alkylating agents.

作者信息

Schendel P F, Defais M

出版信息

Mol Gen Genet. 1980;177(4):661-5. doi: 10.1007/BF00272677.

Abstract

This paper describes studies to determine the role of the umuC gene product in the process of alkylation induced mutagenesis. An active umuC gene is necessary for most MMS induced mutagenesis but it is not essential for EMS nor for MNNG induced mutagenesis in either normal or adapted cultures. In this respect the umuC mutation differs from lexA mutations which have a striking effect on MNNG induced mutagenesis (Schendel, et al., 1978). These findings have prompted a re-evaluation of these previously published data and the advancement of an hypothesis which explains the lexA effect without evoking a role for error-prone repair in the process of alkylation induced mutagenesis. It was also observed that exposure to MNNG is capable of generating a small amount of W-reactivation and W-mutagenesis capacity in a umuC strain which is totally blocked for UV induced reactivation. In light of this result a possible function for the umuC gene product is discussed.

摘要

本文描述了确定umuC基因产物在烷基化诱导诱变过程中作用的研究。活跃的umuC基因对于大多数甲基磺酸甲酯(MMS)诱导的诱变是必需的,但对于甲基磺酸乙酯(EMS)诱导的诱变或在正常培养或适应培养中N-甲基-N'-硝基-N-亚硝基胍(MNNG)诱导的诱变并非必不可少。在这方面,umuC突变与lexA突变不同,lexA突变对MNNG诱导的诱变有显著影响(申德尔等人,1978年)。这些发现促使人们对这些先前发表的数据进行重新评估,并提出了一个假说,该假说解释了lexA效应,而无需在烷基化诱导诱变过程中引入易错修复的作用。还观察到,在紫外线诱导的再活化完全受阻的umuC菌株中,暴露于MNNG能够产生少量的W-再活化和W-诱变能力。鉴于这一结果,讨论了umuC基因产物的可能功能。

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