Aivazashvili V A, Bibilashvili R Sh, Vartikian R M, Kutateladze T V
Mol Biol (Mosk). 1981 May-Jun;15(3):653-67.
Pause location along primary structure of two RNA fragments each 200 nucleotide residues in the length synthesized from A1 promoters of T7 phage DNA and delta D111 T7 phage DNA was analyzed. No correlation between the location of pauses and GC-rich or self complementary regions of RNA were found. The location of pauses does not change upon the variation of the temperature or ionic strength. Concurrent variation of all four NTP concentrations also did not influence pausing pattern. However the distribution of pauses depends highly on the ratio of the individual substrate concentrations. Substitution of GTP by ITP changes the pausing pattern completely. Inorganic pyrophosphate (PPi) of inhibits RNA elongation preferentially in the regions: NAUN, CGUAG. The study of PPi action on RNA terminated with 3' OCH3-NMP suggest that the sequence-specific inhibition of RNA elongation may be a result of pyrophosphorolysis of terminal nucleotide residues of RNA. It was proposed that the pulse character of RNA elongation stems rather from differences in the kinetic constants of nucleotides attachment and pyrophosphorolysis from the 3'-termini of RNA than by termination signals encoded in the primary structure of DNA. The stable location of pauses in certain short oligonucleotides: AUG, AUU, AAU and some others is in favour of the hypothesis.
分析了由T7噬菌体DNA的A1启动子和δD111 T7噬菌体DNA合成的两个长度均为200个核苷酸残基的RNA片段一级结构上的暂停位置。未发现暂停位置与RNA富含GC或自我互补区域之间存在相关性。暂停位置不会因温度或离子强度的变化而改变。同时改变所有四种NTP浓度也不会影响暂停模式。然而,暂停的分布高度依赖于各个底物浓度的比例。用ITP替代GTP会完全改变暂停模式。无机焦磷酸(PPi)优先在以下区域抑制RNA延伸:NAUN、CGUAG。对PPi作用于以3'-OCH3-NMP终止的RNA的研究表明,RNA延伸的序列特异性抑制可能是RNA末端核苷酸残基焦磷酸解的结果。有人提出,RNA延伸的脉冲特性更多地源于核苷酸连接和从RNA 3'-末端焦磷酸解的动力学常数差异,而不是DNA一级结构中编码的终止信号。某些短寡核苷酸(如AUG、AUU、AAU等)中暂停的稳定位置支持这一假设。