Keohavong P, Kat A G, Cariello N F, Thilly W G
Department of Applied Biological Sciences, Massachusetts Institute of Technology, Cambridge 02139.
DNA. 1988 Jan-Feb;7(1):63-70. doi: 10.1089/dna.1988.7.63.
We have evaluated in vitro DNA amplification by polymerase chain reaction using either T4 DNA polymerase or Klenow fragment of Escherichia coli DNA polymerase I. Both polymerases under optimal salt conditions permit efficient amplification of exon 3 of the hypoxanthine guanine phosphoribosyltransferase (HPRT) gene from human genomic DNA and from plasmid containing the HPRT cDNA. DNA sequences amplified from human genomic DNA, using two 20-nucleotide primers flanking the ends of the exon, showed a marked difference between the two polymerases. T4 DNA polymerase yielded only the expected amplified DNA fragment, whereas Klenow fragment produced many lower-molecular-weight bands in addition to the expected DNA fragment. On the basis of the reported fidelity of in vitro DNA synthesis using Klenow fragment and T4 DNA polymerase, it is expected that the latter will create substantially fewer errors during the amplification process. For these reasons, T4 DNA polymerase should be particularly valuable for amplification of sequences present at a very low frequency requiring many cycles of amplification to be detected.
我们已经评估了使用T4 DNA聚合酶或大肠杆菌DNA聚合酶I的Klenow片段通过聚合酶链反应进行的体外DNA扩增。在最佳盐条件下,这两种聚合酶都能有效地从人基因组DNA和含有次黄嘌呤鸟嘌呤磷酸核糖转移酶(HPRT)cDNA的质粒中扩增HPRT基因的外显子3。使用位于外显子两端的两个20核苷酸引物从人基因组DNA中扩增的DNA序列显示,这两种聚合酶之间存在明显差异。T4 DNA聚合酶只产生预期的扩增DNA片段,而Klenow片段除了预期的DNA片段外还产生许多低分子量条带。根据报道的使用Klenow片段和T4 DNA聚合酶进行体外DNA合成的保真度,预计后者在扩增过程中产生的错误会少得多。基于这些原因,T4 DNA聚合酶对于扩增以非常低的频率存在且需要许多扩增循环才能检测到的序列应该特别有价值。