Romano L J, Richardson C C
J Biol Chem. 1979 Oct 25;254(20):10476-82.
DNA polymerase and gene 4 protein of bacteriophage T7 catalyze DNA synthesis on duplex DNA templates. Synthesis is initiated at nicks in the DNA template, and this leading strand synthesis results in displacement of one of the parental strands. In the presence of ribonucleoside 5'-triphosphates the gene 4 protein catalyzes the synthesis of oligoribonucleotide primers on the displaced single strand, and their extension by T7 dna polymerase accounts for lagging strand synthesis. Since all the oligoribonucleotide primers bear adenosine 5'-triphosphate residues at their 5' termini, [gamma 32P]ATP is incorporated specifically into the product molecule, thus providing a rapid and sensitive assay for the synthesis of the RNA primers. Both primer synthesis and DNA synthesis are stimulated 3- to 5-fold by the presence of either Escherichia coli or T7 helix-destabilizing protein (DNA binding protein). ATP and CTP together fully satisfy the requirement for rNTPs and provide maximum synthesis of primers and DNA. Provided that T7 DNA polymerase is present, RNA-primed DNA synthesis occurs on either duplex or single-stranded DNA templates and to equal extents on either strand of T7 DNA. No primer-directed DNA synthesis occurs on poly(dT) or poly(dG) templates, indicating that synthesis of primers is template-directed.
噬菌体T7的DNA聚合酶和基因4蛋白催化双链DNA模板上的DNA合成。合成在DNA模板的切口处起始,这种前导链合成导致一条亲代链被置换。在核糖核苷5'-三磷酸存在的情况下,基因4蛋白催化在被置换的单链上合成寡核糖核苷酸引物,并且它们由T7 DNA聚合酶进行延伸构成滞后链合成。由于所有的寡核糖核苷酸引物在其5'末端带有5'-三磷酸腺苷残基,[γ-32P]ATP被特异性地掺入产物分子中,从而为RNA引物的合成提供了一种快速且灵敏的检测方法。引物合成和DNA合成在存在大肠杆菌或T7解链蛋白(DNA结合蛋白)时均被刺激3至5倍。ATP和CTP共同完全满足对核糖核苷三磷酸的需求,并提供引物和DNA的最大合成量。只要存在T7 DNA聚合酶,RNA引发的DNA合成就在双链或单链DNA模板上发生,并且在T7 DNA的两条链上程度相同。在聚(dT)或聚(dG)模板上不发生引物指导的DNA合成,这表明引物的合成是模板指导的。