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在等温条件下,嗜热 DNA 聚合酶对短 DNA 序列的延伸模型。

Model of elongation of short DNA sequence by thermophilic DNA polymerase under isothermal conditions.

机构信息

Graduate School of Engineering, Nagoya University, Furo-cho, Chikusa, Nagoya 464-8603, Japan.

出版信息

Biochemistry. 2012 Oct 9;51(40):7846-53. doi: 10.1021/bi3010413. Epub 2012 Sep 27.

Abstract

Short DNA sequences, especially those that are repetitive or palindromic, can be used as the seeds for synthesis of long DNA by some DNA polymerases in an unusual manner. Although several elongation mechanisms have been proposed, there is no well-established model that explains highly efficient elongation under isothermal conditions. In the present study, we analyzed the elongation of nonrepetitive sequences with distinct hairpins at each end. These DNAs were elongated efficiently under isothermal conditions by thermophilic Vent (exo(-)) DNA polymerase, and the products were longer than 10 kb within 10 min of the reaction. A 20-nucleotide DNA with only one hairpin was also elongated. Sequence analysis revealed that the long products are mainly tandem repeats of the short seed sequences. The thermal melting temperatures of the products were much higher than the reaction temperature, indicating that most DNAs form duplexes during the reaction. Accordingly, a terminal hairpin formation and self-priming extension model was proposed in detail, and the efficient elongation was explained. Formation of the hairpin at the 5' end plays an important role during the elongation.

摘要

短 DNA 序列,特别是那些重复或回文的序列,可以作为某些 DNA 聚合酶以一种特殊方式合成长 DNA 的种子。虽然已经提出了几种延伸机制,但还没有一个完善的模型可以解释在等温条件下的高效延伸。在本研究中,我们分析了具有独特发夹结构的非重复序列的延伸。这些 DNA 可以在嗜热 Vent(exo(-))DNA 聚合酶的作用下在等温条件下高效延伸,反应 10 分钟内产物长度超过 10 kb。只有一个发夹的 20 个核苷酸的 DNA 也能被延伸。序列分析表明,长产物主要是短种子序列的串联重复。产物的热融解温度远高于反应温度,表明大多数 DNA 在反应过程中形成双链。因此,我们详细提出了一种末端发夹形成和自我引物延伸模型,并解释了高效延伸的原因。5' 端发夹结构的形成在延伸过程中起着重要作用。

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