限制性酶
DNA聚合酶
DNA钳
底漆(化妆品)
聚合酶
DNA聚合酶Ⅱ
DNA
生物
分子生物学
识别序列
DNA复制
核酸内切酶
遗传学
聚合酶链反应
化学
基因
逆转录酶
有机化学
作者
Xingguo Liang,Kari Jensen,Maxim D. Frank‐Kamenetskii
出处
期刊:Biochemistry
[American Chemical Society]
日期:2004-10-01
卷期号:43 (42): 13459-13466
被引量:74
摘要
We have found that, in the presence of a thermophilic restriction endonuclease, thermophilic DNA polymerase efficiently synthesizes and amplifies DNA in the absence of any added template and primer nucleic acid under isothermal conditions. More than 10 microg of DNA can be synthesized by 1 unit of DNA polymerase in 1 h, and the reaction proceeds until available dNTPs are consumed. We used mostly the Tsp509I restriction endonuclease (recognition sequence: decreasing AATT), the TspRI restriction endonuclease (recognition sequence: NNCA(G/C)TGNN decreasing), and Vent (exo(-)) and Vent DNA polymerase. The synthesized double-stranded DNA has a highly repetitive palindromic sequence, e.g. (AAAAATTTTT)(n) and (ATACACTGTATATACAGTGTAT)(n). In every repeating unit, there are one or two recognition sites for the restriction enzyme. Our data show that the high efficiency of the restriction-endonuclease-DNA-polymerase (RE-pol) DNA synthesis results from an efficient exponential amplification involving digestion-elongation cycles: a longer DNA with numerous recognition sites for the restriction enzyme is digested to short fragments, and the short fragments are used as seeds for elongation to synthesize longer DNA. A possible role of RE-pol DNA synthesis in the evolutionary development of genetic materials is briefly discussed.
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