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与λN染色体形成质粒的功能拮抗。

Functions antagonistic to plasmid formation by lambda N- chromosomes.

作者信息

Hadfield C, Brammar W J

出版信息

J Gen Microbiol. 1984 Oct;130(10):2515-26. doi: 10.1099/00221287-130-10-2515.

Abstract

It was concluded in the preceding paper that lambda N- cI- genomes probably failed to form plasmids within infected Escherichia coli cells because they leakily express functions that act to destabilize the plasmid state. This prediction was investigated by examining the effect upon plasmid-forming ability of the loss of possible anti-plasmid functions. The loss of Ter function was found to allow long-term plasmid formation, although the efficiency of initial plasmid formation and the heritable stability without selection were low. The combined loss of the int, red and gam gene functions also promoted plasmid growth, although the absence of Ter lambda was necessary. In contrast, the presence of Ter80 (due to an h80 substitution) did not prevent plasmid formation when the int, red and gam genes were absent, indicating that Ter80 does not attack the closed-circular form of the lambda chromosome. The combined loss of the ter, int, red and gam gene functions facilitated fully efficient inheritance of the lambda N- cI- plasmids in the absence of selection, although the efficiency of initial plasmid formation remained low. However, cells harbouring such plasmids suffered a decline in viability, indicating that the plasmids expressed a function (or more than one) that acts to debilitate the host cells--presumably an effect that is increased with this genotype because the modified lambda N- cI- plasmids are inherently more stable. The possible involvement of the lambda S and kil functions in destabilization is discussed.

摘要

在前一篇论文中得出的结论是,λ N-cI-基因组可能无法在受感染的大肠杆菌细胞内形成质粒,因为它们会渗漏表达一些会破坏质粒状态的功能。通过研究缺失可能的抗质粒功能对质粒形成能力的影响,对这一预测进行了研究。发现缺失Ter功能可允许长期质粒形成,尽管初始质粒形成效率以及无选择情况下的遗传稳定性较低。int、red和gam基因功能的联合缺失也促进了质粒生长,不过缺失λ Ter是必要的。相比之下,当int、red和gam基因缺失时,Ter80(由于h80替换)的存在并不阻止质粒形成,这表明Ter80不会攻击λ染色体的闭环形式。ter、int、red和gam基因功能的联合缺失在无选择情况下促进了λ N-cI-质粒的完全有效遗传,尽管初始质粒形成效率仍然较低。然而,携带此类质粒的细胞活力下降,这表明这些质粒表达了一种(或多种)使宿主细胞衰弱的功能——推测这种影响因该基因型而增强,因为修饰后的λ N-cI-质粒本身更稳定。讨论了λ S和kil功能在破坏稳定过程中可能的参与情况。

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