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多胺通过抑制开放阅读框中的琥珀终止密码子来增强RNA聚合酶σ38亚基的合成。

Polyamines enhance synthesis of the RNA polymerase sigma 38 subunit by suppression of an amber termination codon in the open reading frame.

作者信息

Yoshida Madoka, Kashiwagi Keiko, Kawai Gota, Ishihama Akira, Igarashi Kazuei

机构信息

Graduate School of Pharmaceutical Sciences, Chiba University, 1-33 Yayoi-cho, Inage-ku, Chiba 263-8522, Japan.

出版信息

J Biol Chem. 2002 Oct 4;277(40):37139-46. doi: 10.1074/jbc.M206668200. Epub 2002 Jul 29.

DOI:10.1074/jbc.M206668200
PMID:12147703
Abstract

The mechanisms by which polyamines stimulate synthesis of the RNA polymerase sigma(38) subunit in Escherichia coli were studied. Polyamine stimulation was observed only in strains in which the 33rd codon of RpoS mRNA is a UAG termination codon instead of a CAG codon for glutamine in wild-type E. coli. Readthrough of the termination codon by Gln-tRNA(supE) was stimulated by polyamines. This stimulation was found to be caused by an increase in both the level of suppressor tRNA(supE) and the binding affinity of Gln-tRNA(supE) for ribosomes. The stimulatory effect was observed with a UAG termination codon but not with UGA and UAA codons. Readthrough of the UAG termination codon at the 270th amino acid position of RpoS mRNA was also stimulated by polyamines, indicating that polyamines stimulate readthrough of a UAG codon regardless of its location within the RpoS mRNA. When cell viability of an E. coli strain having a termination codon in the 33rd position of RpoS mRNA was compared using cells cultured with or without putrescine, it was higher in cells cultured with putrescine than in cells cultured without putrescine. The level of sigma(38) subunit in the cells cultured with putrescine was higher than that in cells cultured without putrescine on days 2, 4, and 8, but the level of sigma(70) subunit was almost the same in cells cultured with or without putrescine. These results confirm that elevated expression of the rpoS gene is important for cell viability at late stationary phase.

摘要

研究了多胺刺激大肠杆菌RNA聚合酶σ(38)亚基合成的机制。仅在RpoS mRNA的第33个密码子为UAG终止密码子而非野生型大肠杆菌中谷氨酰胺的CAG密码子的菌株中观察到多胺刺激。谷氨酰胺-tRNA(supE)对终止密码子的通读受到多胺的刺激。发现这种刺激是由抑制性tRNA(supE)水平的增加以及谷氨酰胺-tRNA(supE)与核糖体的结合亲和力增加引起的。在UAG终止密码子处观察到刺激作用,而在UGA和UAA密码子处未观察到。多胺也刺激了RpoS mRNA第270个氨基酸位置的UAG终止密码子的通读,表明多胺刺激UAG密码子的通读,而不管其在RpoS mRNA中的位置如何。当比较在RpoS mRNA第33位具有终止密码子的大肠杆菌菌株在添加或不添加腐胺培养的细胞的活力时,添加腐胺培养的细胞的活力高于未添加腐胺培养的细胞。在第2天、第4天和第8天,添加腐胺培养的细胞中σ(38)亚基的水平高于未添加腐胺培养的细胞,但添加或不添加腐胺培养的细胞中σ(70)亚基的水平几乎相同。这些结果证实,rpoS基因的表达升高对于稳定期后期的细胞活力很重要。

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