Friedman E Y, Rosbash M
Nucleic Acids Res. 1977 Oct;4(10):3455-71. doi: 10.1093/nar/4.10.3455.
Conditions have been determined under which reverse transcriptase catalyzes the synthesis of the high yields of full length complementary deoxyribonucleic acid (cDNA). These conditions depend not only on the cencentration of deoxynucleoside triphosphates (1) but also on the concentration of reverse transcriptase. An analysis of the kinetics of cDNA synthesis and the size of cDNA synthesized as a function of time under different conditions indicates that the mechanism of action of reverse transcriptase is partially distributive. This accounts for the necessity of a high enzyme concentration to obtain high yields of full length cDNA. Additional experiments indicate that the yield of cDNA is limited by the fact that the template mRNA is rapidly inactivated. This is most likely due to the fact that the product cDNA is hydrogen bonded to the template mRNA during synthesis.
已经确定了逆转录酶催化合成高产率全长互补脱氧核糖核酸(cDNA)的条件。这些条件不仅取决于三磷酸脱氧核苷的浓度(1),还取决于逆转录酶的浓度。对不同条件下cDNA合成动力学以及合成的cDNA大小随时间变化的分析表明,逆转录酶的作用机制部分是分布性的。这解释了需要高浓度酶才能获得高产率全长cDNA的必要性。额外的实验表明,cDNA的产量受到模板mRNA迅速失活这一事实的限制。这很可能是由于在合成过程中产物cDNA与模板mRNA形成了氢键。