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大肠杆菌中前核糖体RNA“间隔区”序列的稳定性

Stability of "spacer" sequences of pre-ribosomal RNA in Escherichia coli.

作者信息

Kano Y, Silengo L, Imamoto F

出版信息

Mol Gen Genet. 1976 Aug 2;146(3):275-83. doi: 10.1007/BF00701251.

Abstract

"SPACER" SEQUENCES OF AN RRNA gene transcript were detected with high efficiency by hybridization with DNA of the specilized transducing phase phi80rrn. Hybridization-competition studies revealed that 20 to 23% of the 30S precursor rRNA, obtained from E. coli mutant strain AB301/105, consist of "spacer" sequences. The "spacer" sequences formed hybrids with E. coli DNA, but not with Vibrio DNA. Experiments with RNA labeling in the presence of rifampicin showed that more than 80% of the spacer sequences arrive in full-length 30S pre rRNA chains before any cleavage of the RNA occurs. The hybridization assays also permitted the detection of "spacer" sequences in pulse-labeled rRNA of wild-type cells, in which the 30S pre-rRNA is already cleaved during its synthesis. Many of these "spacer" sequences degraded to alcohol-soluble materials with a half-life time of 1.2 min. The half-life was not lengthened by the treatment of cells with chloramphenicol, which stabilizes bulk mRNA. However, unstable "spacer" sequences transcribed in cells deficient in RNase III exhibited slower degradation, with a half-life time of about 9 min, whereas the cleavage of 30S pre-rRNA to smaller RNA species occurred with a half-life of about 3 min. These results are consistent with the notion that a rate-limiting action of RNase III in the initial attack leads to degradation of "spacer" sequences in rRNA gene transcript; and that degradation is not at all connected with ribosome translocation.

摘要

通过与特异性转导噬菌体phi80rrn的DNA杂交,高效检测到了rRNA基因转录本的“间隔区”序列。杂交竞争研究表明,从大肠杆菌突变株AB301/105获得的30S前体rRNA中,20%至23%由“间隔区”序列组成。“间隔区”序列能与大肠杆菌DNA形成杂交体,但不能与弧菌DNA形成杂交体。在利福平存在下进行RNA标记的实验表明,在RNA发生任何切割之前,超过80%的间隔区序列已进入全长30S前rRNA链。杂交分析还能检测野生型细胞脉冲标记rRNA中的“间隔区”序列,在野生型细胞中,30S前rRNA在合成过程中已被切割。许多这些“间隔区”序列降解为醇溶性物质,半衰期为1.2分钟。用氯霉素处理细胞(氯霉素可稳定大量mRNA)并没有延长半衰期。然而,在缺乏RNase III的细胞中转录的不稳定“间隔区”序列降解较慢,半衰期约为9分钟,而30S前rRNA切割成较小RNA种类的半衰期约为3分钟。这些结果与以下观点一致:RNase III在初始攻击中的限速作用导致rRNA基因转录本中“间隔区”序列的降解;并且这种降解与核糖体易位完全无关。

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