Liang Xingguo, Li Benjamin Chun-Yeung, Jensen Kari, Frank-Kamenetskii Maxim D
Department of Molecular Design and Engineering, Graduate School of Engineering, Nagoya University, Chikusa, Nagoya 464-8603, Japan.
Nucleic Acids Symp Ser (Oxf). 2006(50):95-6. doi: 10.1093/nass/nrl047.
In the presence of an endonuclease that digests double-stranded DNA, DNA polymerase efficiently synthesizes and amplifies DNA from dNTPs in the absence of any added template and primer nucleic acid. This cut-polymerization DNA synthesis (Cut-grow) can be carried out under a wide range of temperature (4-85 degrees C) by many endonucleases and DNA polymerases. The high efficiency of Cut-grow results from an efficient exponential amplification involving digestion-elongation cycles. Our findings suggest that digestion of nucleic acids may play an important role during the evolution of genetic material for procreating the diversification of genetic information on the early earth.
在存在能消化双链DNA的核酸内切酶的情况下,DNA聚合酶在没有添加任何模板和引物核酸的情况下,能有效地从脱氧核苷三磷酸(dNTPs)合成并扩增DNA。这种切割-聚合DNA合成(切割-生长)可由多种核酸内切酶和DNA聚合酶在广泛的温度范围(4-85摄氏度)下进行。切割-生长的高效率源于涉及消化-延伸循环的高效指数扩增。我们的研究结果表明,核酸的消化在遗传物质进化过程中可能发挥重要作用,以产生早期地球上遗传信息的多样化。