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Enzyme-Free Replication with Two or Four Bases

机译:与两种或四个基地无酶复制

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摘要

All known forms of life encode their genetic information in a sequence of bases of a genetic polymer and produce copies through replication. How this process started before polymerase enzymes had evolved is unclear. Enzyme-free copying of short stretches of DNA or RNA has been demonstrated using activated nucleotides, but not replication. We have developed a method for enzyme-free replication. It involves extension with reversible termination, enzyme-free ligation, and strand capture. We monitored nucleotide incorporation for a full helical turn of DNA, during both a first and a second round of copying, by using mass spectrometry. With all four bases (A/C/G/T), an error catastrophe occurred, with the correct sequence being overwhelmed by incorrect ones. When only C and G were used, approximately half of the daughter strands had the mass of the correct sequence after 20 copying steps. We conclude that enzyme-free replication is more likely to be successful with just the two strongly pairing bases than with all four bases of the genetic alphabet.
机译:所有已知的生命形式以遗传聚合物的一系列碱基编码它们的遗传信息,并通过复制产生拷贝。如何在聚合酶酶进化之前开始该过程尚不清楚。使用活化的核苷酸证明了无脉冲短延伸的酶复制的DNA或RNA,但不复制。我们开发了一种无酶复制的方法。它涉及延伸可逆终止,无酶连接和链捕获。通过使用质谱法在第一和第二轮复制期间监测核苷酸掺入DNA的全螺旋转动。凭借所有四个基础(A / C / G / T),发生了错误灾难,正确的序列被错误的次数不堪重负。当使用C和G时,大约一半的子绞线在20个复印步骤后具有正确序列的质量。我们得出结论,只有两种强烈配对的基础比遗传字母的所有四个基座更容易成功,更容易成功。

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