Prychitko T M, Ries E A, Moore W S
Department of Biological Sciences, Wayne State University, Detroit, MI 48202, USA.
Mol Biotechnol. 1998 Dec;10(3):231-6. doi: 10.1007/BF02740843.
Direct cycle sequencing of double-stranded polymerase chain reaction (PCR) products using thermostable polymerases produces fragments that are shorter than expected when the enzyme prematurely detaches as it approaches the 5'-end of the DNA template. These premature terminations result in a substantially reduced reading length of the DNA sequence. Since some DNA templates spontaneously fold and form stable secondary structures at temperatures that are typically used for primer annealing, one factor that may cause premature terminations to occur is the formation of secondary structures in the template during the annealing step of the cycle sequencing reaction. We describe a simple and effective method for reducing premature terminations in DNA sequences. We demonstrate that maintaining the annealing temperature of the cycle sequencing reaction above a critical temperature reduces premature terminations in DNA sequences that regularly contain premature terminations when the temperature of the annealing step is 60 degrees C. In the method described, annealing and extension of the primer along the template take place at the same temperature (72 degrees C). This procedure for reducing premature terminations can be applied when sequencing with primers that are relatively long (at least 27 mer) and have high optimal annealing temperatures.
使用热稳定聚合酶对双链聚合酶链反应(PCR)产物进行直接循环测序时,当酶在接近DNA模板5'端时过早脱离,会产生比预期短的片段。这些过早终止会导致DNA序列的读取长度大幅缩短。由于一些DNA模板在通常用于引物退火的温度下会自发折叠并形成稳定的二级结构,在循环测序反应的退火步骤中模板形成二级结构可能是导致过早终止发生的一个因素。我们描述了一种减少DNA序列中过早终止的简单有效方法。我们证明,将循环测序反应的退火温度维持在临界温度以上,可减少当退火步骤温度为60℃时经常出现过早终止的DNA序列中的过早终止现象。在所描述的方法中,引物沿模板的退火和延伸在相同温度(72℃)下进行。当使用相对较长(至少27个碱基)且具有高最佳退火温度的引物进行测序时,这种减少过早终止的方法可以应用。