Brandis J W
DNA Chemistry Group, Genetic Analysis Business Unit, PE Biosystems, 850 Lincoln Center Drive, Foster City, CA 94404, USA.
Nucleic Acids Res. 1999 Apr 15;27(8):1912-8. doi: 10.1093/nar/27.8.1912.
All DNA sequencing methods have benefited from the development of new F667Y versions of Taq DNA polymerase. However, terminator chemistry methods show less uniform peak height patterns when compared to primer chemistry profiles suggesting that the dyes and/or their linker arms affect enzyme selectivity. We have measured elementary nucleotide rate and binding constants for representative rhodamine- and fluorescein-labeled terminators to determine how they interact with F667 versions of Taq Pol I. We have also developed a rapid gel-based selectivity assay that can be used to screen and to quantify dye-enzyme interactions with F667Y versions of the enzyme. Our results show that 6-TAMRA-ddTTP behaves like unlabeled ddTTP, while 6-FAM-ddTTP shows a 40-fold reduction in the rate constant for polymerization without affecting ground-state nucleotide binding. Detailed mechanism studies indicate that both isomers of different fluorescein dyes interfere with a conformational change step which the polymerase undergoes following nucleotide binding but only when these dyes are attached to pyrimidines. When these same dyes are attached to purines by the same propargylamino linker arm, they show no effect on enzyme selectivity. These studies suggest that it may be possible to develop fluorescein terminators for thermocycle DNA sequencing methods for polymerases that do not discriminate between deoxy- and dideoxynucleotides.
所有DNA测序方法都受益于新型F667Y版本的Taq DNA聚合酶的开发。然而,与引物化学图谱相比,终止剂化学方法显示出不太均匀的峰高模式,这表明染料和/或它们的连接臂会影响酶的选择性。我们已经测量了代表性的罗丹明和荧光素标记终止剂的基本核苷酸速率和结合常数,以确定它们如何与Taq Pol I的F667版本相互作用。我们还开发了一种基于凝胶的快速选择性测定法,可用于筛选和定量染料与该酶F667Y版本的相互作用。我们的结果表明,6-TAMRA-ddTTP的行为类似于未标记的ddTTP,而6-FAM-ddTTP在不影响基态核苷酸结合的情况下,聚合反应速率常数降低了40倍。详细的机制研究表明,不同荧光素染料的两种异构体都会干扰聚合酶在核苷酸结合后经历的构象变化步骤,但仅当这些染料连接到嘧啶上时才会如此。当这些相同的染料通过相同的炔丙基氨基连接臂连接到嘌呤上时,它们对酶的选择性没有影响。这些研究表明,对于不区分脱氧核苷酸和双脱氧核苷酸的聚合酶,有可能开发用于热循环DNA测序方法的荧光素终止剂。