Loewen P C, Switala J
Department of Microbiology, University of Manitoba, Winnipeg, Canada.
Gene. 1995 Oct 16;164(1):59-63. doi: 10.1016/0378-1119(95)00383-h.
Amplification of portions of the intergenic spacer between the katE gene and cryptic cel operon of Escherichia coli was accomplished by the polymerase chain reaction using the DNA polymerase from Thermus aquaticus. Nine different segments were amplified and cloned without error, but one 83-bp fragment was amplified with a high error rate such that 32 of 34 selected clones had three or more nucleotide changes from the expected sequence. The changes were all located in two 9-bp segments immediately adjacent to the 3'-ends of the two primers. Moving the end points of the primers to increase the spacing between them resulted in the isolation of significantly fewer error-containing products. It is proposed that stem-loop structures in the template immediately downstream from the primers interfere with an early stage of elongation and cause misincorporation. This is supported by the observation that destabilisation of one of the stem-loop structures reduced the frequency of errors.
利用水生栖热菌的DNA聚合酶,通过聚合酶链反应实现了大肠杆菌katE基因与隐蔽性cel操纵子之间基因间间隔区部分片段的扩增。九个不同片段被无误地扩增并克隆,但一个83bp的片段以高错误率被扩增,以至于在34个选定的克隆中,有32个与预期序列有三个或更多核苷酸变化。这些变化都位于紧邻两条引物3'-末端的两个9bp片段中。移动引物的端点以增加它们之间的间距,导致含错误产物的分离显著减少。有人提出引物下游模板中的茎环结构会干扰延伸的早期阶段并导致错误掺入。一个茎环结构的不稳定降低了错误频率这一观察结果支持了这一点。