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通过缺失环诱变产生的大肠杆菌16S核糖体RNA中部的点突变。

Point mutations in the middle of 16S ribosomal RNA of E. coli produced by deletion loop mutagenesis.

作者信息

Zwieb C, Dahlberg A E

出版信息

Nucleic Acids Res. 1984 May 25;12(10):4361-75. doi: 10.1093/nar/12.10.4361.

Abstract

Using the plasmid pKK3535 , which contains the rrnB operon of Escherichia coli in pBR322, a deletion mutation was constructed which lacks bases 822 to 874 in the middle of the 16S ribosomal RNA. This results in an "amputation" of a very distinct stem and loop structure in the RNA. By forming a heteroduplex between the deletion plasmid and the original pKK3535 and by modifying the single-stranded deletion loops with bisulfite, we produced plasmids containing one or two base changes at positions 839, 840, 841, 867 or 876. The clustering of the mutations near the top of the stem, and the inability to get base changes at other positions, suggests that single alterations at particular positions severely affect the formation of a functional ribosome. The ability to recover mutations at these positions is not determined by the secondary structure of the DNA during bisulfite mutagenesis. Restriction enzyme analysis of 12 revertants from a slow growing mutant (altered at positions 839 and 876) shows that they did not compensate for the mutation by re-establishing the original wild type sequence.

摘要

利用质粒pKK3535(它在pBR322中含有大肠杆菌的rrnB操纵子)构建了一个缺失突变体,该突变体在16S核糖体RNA中部缺失了822至874位碱基。这导致RNA中一个非常独特的茎环结构被“截断”。通过在缺失质粒和原始pKK3535之间形成异源双链体,并使用亚硫酸氢盐修饰单链缺失环,我们构建了在839、840、841、867或876位含有一个或两个碱基变化的质粒。突变在茎顶部附近聚集,且无法在其他位置产生碱基变化,这表明特定位置的单个改变会严重影响功能性核糖体的形成。在亚硫酸氢盐诱变过程中,在这些位置恢复突变的能力并非由DNA的二级结构决定。对一个生长缓慢的突变体(在839和876位发生改变)的12个回复突变体进行限制性内切酶分析表明,它们并未通过重新建立原始野生型序列来补偿突变。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/67da/318837/416bf333fe30/nar00328-0315-a.jpg

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