Vastmans K, Pochet S, Peys A, Kerremans L, Van Aerschot A, Hendrix C, Marlière P, Herdewijn P
Laboratory of Medicinal Chemistry, Rega Institute, Katholieke Universiteit Leuven, Minderbroedersstraat 10, B-3000 Leuven, Belgium.
Biochemistry. 2000 Oct 24;39(42):12757-65. doi: 10.1021/bi001297g.
The ability of several DNA polymerases to catalyze the template-directed synthesis of duplex oligonucleotides containing a base pair between a nucleotide with anhydrohexitol ring and its natural complement has been investigated. All DNA polymerases were able to accept the chemically synthesized anhydrohexitol triphosphate as substrate and to catalyze the incorporation of one anhydrohexitol nucleotide. However, only family B DNA polymerases succeeded in elongating the primer after the incorporation of an anhydrohexitol nucleotide. In this family, Vent (exo(-)) DNA polymerase is the most successful one and was therefore selected for further investigation. Results revealed that at high enzyme concentrations six hATPs could be incorporated; however, a selective incorporation proved only feasible under experimental conditions where no more than two analogues could be inserted. Also the synthesis of a mixed HNA-DNA sequence was examined. Kinetic parameters for incorporation of one anhydrohexitol adenine nucleoside were similar to those of its natural analogue.
已经研究了几种DNA聚合酶催化模板指导合成双链寡核苷酸的能力,该双链寡核苷酸在含有脱水己糖醇环的核苷酸与其天然互补物之间含有一个碱基对。所有DNA聚合酶都能够接受化学合成的脱水己糖醇三磷酸作为底物,并催化一个脱水己糖醇核苷酸的掺入。然而,只有B族DNA聚合酶在掺入脱水己糖醇核苷酸后成功延长了引物。在这个家族中,Vent(exo(-))DNA聚合酶是最成功的一种,因此被选作进一步研究。结果表明,在高酶浓度下,可以掺入六个hATP;然而,只有在不超过两个类似物可以插入的实验条件下,选择性掺入才可行。还研究了混合HNA-DNA序列的合成。掺入一个脱水己糖醇腺嘌呤核苷的动力学参数与其天然类似物相似。