Van Kreijl C F, Beelen R H, Borst P
Nucleic Acids Res. 1977 Feb;4(2):425-44. doi: 10.1093/nar/4.2.425.
We have studied the effect of temperature, primer chain length and primer concentration on the oligonucleotide-primed transcription by Escherichia coli RNA polymerase. Our experiments with the homopolymer model systems poly(dT) .oligo(A)n, poly(dA) .oligo(U)n and poly(dA) .oligo(dT)n lead to three main conclusions. First, de novo chain initiation on single-stranded templates is preferentially suppressed at higher temperatures. Second, stable annealing of template and primer is neither a prerequisite nor does it stimulate the primer-dependent transcription. Third, formation of the ternary enzyme-template-primer complex is a rate-limiting step in the oligonucleotide-primed RNA synthesis. The maximal rate of primer-stimulated RNA synthesis, moreover, is strongly dependent on the nature of the primer and decreases in the order oligo(A)-primed poly(A) synthesis greater than oligo(U)-primed poly(U) synthesis greater than oligo(dT)-primed poly(U) synthesis. We attribute this to differences in the rate at which the first nucleotide is added to the primer. Raising temperature and primer concentration renders transcription in the model systems almost completely primer-dependent. This can be useful in a transcription approach to DNA sequence analysis.
我们研究了温度、引物链长度和引物浓度对大肠杆菌RNA聚合酶引发的寡核苷酸转录的影响。我们对均聚物模型系统聚(dT).寡聚(A)n、聚(dA).寡聚(U)n和聚(dA).寡聚(dT)n进行的实验得出了三个主要结论。第一,在较高温度下,单链模板上的从头链起始优先受到抑制。第二,模板与引物的稳定退火既不是引物依赖性转录的先决条件,也不会刺激该转录。第三,三元酶-模板-引物复合物的形成是寡核苷酸引发的RNA合成中的限速步骤。此外,引物刺激的RNA合成的最大速率强烈依赖于引物的性质,并且按以下顺序降低:寡聚(A)引发的聚(A)合成大于寡聚(U)引发的聚(U)合成大于寡聚(dT)引发的聚(U)合成。我们将此归因于第一个核苷酸添加到引物上的速率差异。提高温度和引物浓度使模型系统中的转录几乎完全依赖于引物。这在DNA序列分析的转录方法中可能是有用的。