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大肠杆菌K-12中紫外线诱导的限制缓解的表达。具有延迟DNA注入模式的λ噬菌体部分的检测。

Expression of ultraviolet-induced restriction alleviation in Escherichia coli K-12. Detection of a lambda phage fraction with a retarded mode of DNA injection.

作者信息

Thoms B, Wackernagel W

出版信息

Biochim Biophys Acta. 1983 Jan 20;739(1):42-7. doi: 10.1016/0167-4781(83)90042-8.

Abstract

Ultraviolet-induced restriction alleviation is an SOS function which partially relieves the K-12-specific DNA restriction in Escherichia coli. Restriction alleviation is determined by observing elevated survival of unmodified phage lambda in cells irradiated with ultraviolet prior to infection. We demonstrate that restriction of lambda is also relieved when log-phase cells are irradiated as late as 50 min after adsorption of lambda. At this time more than 60% of the lambda DNA is already released as acid-soluble material from the cells. Experiments involving reextraction of lambda DNA from infected cells and a mild detergent treatment removing absorbed phages from the cellular surface showed that only a small specific fraction of all lambda infections is destined to escape restriction due to restriction alleviation. This fraction (10-20%) has a retarded mode of DNA injection (60 min or longer) after adsorption which allows the expression of the restriction alleviation function before the phage DNA is exposed to restriction endonucleases. This behaviour of a fraction of lambda phages explains why the SOS function restriction alleviation could initially be discovered. We show that the retarded mode of DNA injection is not required for another SOS function acting on lambda DNA, the increased repair of ultraviolet-irradiated DNA (Weigle reactivation).

摘要

紫外线诱导的限制缓解是一种SOS功能,它能部分缓解大肠杆菌中K - 12特异性DNA限制。限制缓解通过观察未修饰的噬菌体λ在感染前经紫外线照射的细胞中存活率升高来确定。我们证明,当对数期细胞在λ吸附后长达50分钟时受到照射,λ的限制也会得到缓解。此时,超过60%的λ DNA已作为酸溶性物质从细胞中释放出来。从感染细胞中重新提取λ DNA以及用温和去污剂处理从细胞表面去除吸附噬菌体的实验表明,由于限制缓解,所有λ感染中只有一小部分特定比例的感染注定会逃脱限制。这一比例(10 - 20%)在吸附后具有延迟的DNA注入模式(60分钟或更长时间),这使得在噬菌体DNA暴露于限制性内切酶之前能够表达限制缓解功能。一部分λ噬菌体的这种行为解释了为什么最初能够发现SOS功能限制缓解。我们表明,DNA注入的延迟模式对于作用于λ DNA的另一种SOS功能,即紫外线照射DNA的增强修复(韦格尔复活)不是必需的。

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