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Extension of base mispairs by Taq DNA polymerase: implications for single nucleotide discrimination in PCR

机译:Taq DNA聚合酶扩展碱基错配:对PCR中单核苷酸区分的影响

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Thermus aquaticus (Taq) DNA polymerase was used to measure the extension efficiency for all configurations of matched and mismatched base pairs at template-primer 3′-termini. The transition mispairs, A(primer)·C, C·A, G·T, and T·G were extended 10?3 to 10?4-fold less efficiently than their correctly paired counterparts. Relative efficiencies for extending transversion mispairs were 10?4 to 10?5 for T·C and T·T, about 10?6 for A·A, and less than 10?6 for G·A, A·G, G·G and C·C. The transversion mispair C(primer)·T was extended with high efficiency, about 10?2 compared to a correct A·T basepair. The unexpected ease of extending the C·T mismatch was not likely to have been caused by primer-template misalignment. Taq polymerase was observed to bind with similar affinities to each of the correctly paired and mispaired primer-template 3′-ends. Thus, the failure of Taq polymerase to extend mismatches efficiently appears to be an Intrinsic property of the enzyme and not due to an inability to bind to 3′-terminal mispairs. For almost all of the mispairs, C·T being the exception, Taq polymerase exhibits about 100 to 1000-fold greater discrimination against mismatch extension compared to avian myelobiastosis reverse transcriptase and HIV-1 reverse transcrlptase which extend most mismatched basepairs permissively. Relative mismatch extension efficiencies for Taq polymerase were measured at 45°C, 55°C and 70°C and found to be independent of temperature. The mispair extension data should be important in designing experiments using PCR to distinguish between sequences that vary by a single nucleotide.
机译:水生栖热菌(Taq)DNA聚合酶用于在模板引物3'-末端测量匹配和错配碱基对的所有构型的延伸效率。过渡错配A(引物)·C,C·A,G·T和T·G的延伸效率降低了10 ?3 至10 ?4 倍比配对正确的配对对于T·C和T·T,扩展颠换错配的相对效率为10 ?4 至10 ?5 ,对于A而言约为10 ?6 ·A,而G·A,A·G,G·G和C·C小于10 ?6 。与正确的A·T碱基对相比,颠换错配C(引物)·T的延伸效率高,约为10 ?2 。扩展C·T不匹配的出乎意料的难易程度不太可能是由引物模板错位引起的。观察到Taq聚合酶以相似的亲和力结合到每个正确配对和错配的引物-模板3'-末端。因此,Taq聚合酶不能有效地延伸错配的失败似乎是该酶的内在特性,而不是由于不能结合3'-末端错配。对于几乎所有的错配,C·T是例外,与禽类骨髓增生异常逆转录酶和HIV-1逆转录酶相比,Taq聚合酶对错配延伸的识别性高约100至1000倍,后者允许大多数错配的碱基对进行扩展。 Taq聚合酶的相对错配延伸效率是在45℃,55℃和70℃下测得的,与温度无关。错配对延伸数据在设计使用PCR的实验中很重要,以区分因单个核苷酸而异的序列。

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