Retzel E F, Collett M S, Faras A J
Biochemistry. 1980 Feb 5;19(3):513-8. doi: 10.1021/bi00544a019.
In this communication, we present data which describe optimum conditions for reverse transcription of large ribonucleic acid (RNA) templates into deoxyribonucleic acid (DNA) transcripts by the avian retrovirus reverse transcriptase in vitro. In contrast to previous studies, we have optimized all of the reaction components with respect to their influence on the size of DNA transcripts rather than the incorporation of radio-labeled deoxynucleoside triphosphates into acid-insoluble DNA product. The most dramatic effect on uninterrupted reverse transcription is the presence of physiological concentrations (i.e., 148 mM) of monovalent cation in the reaction mixture, although all of the components of the reaction influence the size of the DNA transcripts synthesized to some extent. The enzymatic conditions described herein for the uninterrupted reverse transcription of large RNA templates (greater than 1000--2000 nucleotides) are superior to those described previously because they are reproducible, do not require the presence of ribonuclease inhibitors, and do not result in the precipitation of components of the reaction mixture during incubation.
在本交流中,我们展示了描述禽逆转录病毒逆转录酶在体外将大核糖核酸(RNA)模板逆转录为脱氧核糖核酸(DNA)转录本的最佳条件的数据。与先前的研究不同,我们针对反应成分对DNA转录本大小的影响而非放射性标记的脱氧核苷三磷酸掺入酸不溶性DNA产物的情况,对所有反应成分进行了优化。对不间断逆转录影响最显著的是反应混合物中存在生理浓度(即148 mM)的单价阳离子,尽管反应的所有成分在一定程度上都会影响合成的DNA转录本的大小。本文所述的用于大RNA模板(大于1000 - 2000个核苷酸)不间断逆转录的酶促条件优于先前描述的条件,因为它们具有可重复性,不需要核糖核酸酶抑制剂的存在,并且在孵育过程中不会导致反应混合物成分沉淀。