Wickens M P, Buell G N, Schimke R T
J Biol Chem. 1978 Apr 10;253(7):2483-95.
Sequential reverse transcriptase, DNA polymerase, and S1 nuclease reactions can be employed to synthesize double-stranded DNA representing messenger RNA. Using reverse transcriptase products made from partially purified lysozyme, ovomucoid, and ovalbumin messengers from hen oviduct, we have characterized the Escherichia coli DNA polymerase I reaction. We have optimized for a high yield of full length second strands under conditions which require only a small amount of mRNA. The effects of several parameters (time, enzyme levels, salt concentration, monovalent cation, and temperature) on the length of products synthesized by DNA polymerase I have been investigated. Each has a significant influence on the proportion of products which are full length. Under our conditions the three reactions are efficient in synthesizing full length duplex DNA from partially purified mRNA fractions or from total poly(A)-containing RNA.
可采用逆转录酶、DNA聚合酶和S1核酸酶的顺序反应来合成代表信使RNA的双链DNA。利用从母鸡输卵管中部分纯化的溶菌酶、卵类粘蛋白和卵清蛋白信使体制备的逆转录产物,我们对大肠杆菌DNA聚合酶I反应进行了表征。我们在仅需要少量mRNA的条件下优化了全长第二链的高产率。研究了几个参数(时间、酶水平、盐浓度、单价阳离子和温度)对DNA聚合酶I合成产物长度的影响。每个参数对全长产物的比例都有显著影响。在我们的条件下,这三个反应能有效地从部分纯化的mRNA组分或从总的含聚腺苷酸的RNA合成全长双链DNA。