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在大肠杆菌中诱导蛋白质X

Induction of protein X in Escherichia coli.

作者信息

Little J W, Hanawalt P C

出版信息

Mol Gen Genet. 1977 Feb 15;150(3):237-48. doi: 10.1007/BF00268122.

Abstract

Certain treatments that damage DNA and/or inhibit replication in E. coli have been reported to induce synthesis of a new protein, termed protein X, in recA+ lexA+ strains. We have examined some of the treatments that might induce protein X and we have, in particular, tested the hypothesis of Gudas and Pardee (1975) that DNA degradation products play an essential role in the induction process. We confirmed that UV irradiation, nalidixic acid treatment, or thymine starvation result in protein X synthesis in wild type strains. However, we found that UV irradiation, unlike nalidixic acid, also induced protein X in recB strains, in which little DNA degradation occurs. Furthermore, we found that the presence of DNA fragments resulting from host-controlled restriction of phage lambda DNA did not affect protein X synthesis. We conclude that no causal relationship exists between the production of DNA fragments and induction of protein X. The presence of the plasmid R46, which confers enhanced mutagenesis and UV resistance on its host, did not affect protein X synthesis. Growth in the presence of 5-bromouracil, which does not result in production of degradation fragments, resulted eventually in a low rate of protein X synthesis. In dnaA mutants, deficient in the initiation of new rounds of replication, UV irradiation induced protein X, again unlike nalidixic acid. Thus, the inhibition of active replication forks is not an essential requirement for protein X induction.

摘要

据报道,某些能损伤大肠杆菌DNA和/或抑制其复制的处理方法可诱导recA⁺lexA⁺菌株合成一种名为蛋白X的新蛋白质。我们研究了一些可能诱导蛋白X的处理方法,特别检验了古达斯和帕迪(1975年)提出的DNA降解产物在诱导过程中起关键作用的假说。我们证实紫外线照射、萘啶酸处理或胸腺嘧啶饥饿会导致野生型菌株合成蛋白X。然而,我们发现紫外线照射与萘啶酸不同,它也能在recB菌株中诱导蛋白X合成,而recB菌株中很少发生DNA降解。此外,我们发现由宿主控制的λ噬菌体DNA限制产生的DNA片段的存在并不影响蛋白X的合成。我们得出结论,DNA片段的产生与蛋白X的诱导之间不存在因果关系。赋予宿主增强诱变作用和紫外线抗性的质粒R46的存在并不影响蛋白X的合成。在不产生降解片段的5-溴尿嘧啶存在下生长最终导致蛋白X合成速率较低。在缺乏新一轮复制起始功能的dnaA突变体中,紫外线照射也能诱导蛋白X合成,这同样与萘啶酸不同。因此,抑制活跃的复制叉不是诱导蛋白X的必要条件。

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