Nucleic Acid Center, Department of Physics, Chemistry and Pharmacy, University of Southern Denmark, Odense M, Denmark.
Bioorg Med Chem Lett. 2012 May 15;22(10):3522-6. doi: 10.1016/j.bmcl.2012.03.073. Epub 2012 Mar 28.
The triphosphate of the thymine derivative of 2'-amino-LNA (2'-amino-LNA-TTP) was synthesised and found to be a good substrate for Phusion® HF DNA polymerase, allowing enzymatic synthesis of modified DNA encoded by an unmodified template. To complement this, 2'-amino-LNA-T phosphoramidites were incorporated into DNA oligonucleotides which were used as templates for enzymatic synthesis of unmodified DNA using either KOD, KOD XL or Phusion polymerases. 2'-Amino-LNA-T in the template and 2'-amino-LNA-TTP as a substrate both decreased reaction rate and yield compared to unmodified DNA, especially for sequences with multiple 2'-amino-LNA-T nucleotides.
2'-氨基-LNA(2'-氨基-LNA-TTP)的胸腺嘧啶衍生物的三磷酸酯被合成,并被发现是 Phusion® HF DNA 聚合酶的良好底物,允许在未修饰的模板编码的修饰 DNA 的酶促合成。为了补充这一点,2'-氨基-LNA-T 亚磷酰胺被掺入到 DNA 寡核苷酸中,这些寡核苷酸被用作模板,使用 KOD、KOD XL 或 Phusion 聚合酶进行未修饰 DNA 的酶促合成。与未修饰的 DNA 相比,模板中的 2'-氨基-LNA-T 和作为底物的 2'-氨基-LNA-TTP 都降低了反应速率和产率,特别是对于具有多个 2'-氨基-LNA-T 核苷酸的序列。