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Taq DNA聚合酶对碱基错配的延伸:对PCR中单个核苷酸识别的影响

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

作者信息

Huang M M, Arnheim N, Goodman M F

机构信息

Department of Biological Sciences, University of Southern California, Los Angeles 90089-1340.

出版信息

Nucleic Acids Res. 1992 Sep 11;20(17):4567-73. doi: 10.1093/nar/20.17.4567.

Abstract

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 myeloblastosis reverse transcriptase and HIV-1 reverse transcriptase which extend most mismatched basepairs permissively. Relative mismatch extension efficiencies for Taq polymerase were measured at 45 degrees C, 55 degrees C and 70 degrees 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.

摘要

嗜热水生栖热菌(Taq)DNA聚合酶用于测定模板-引物3'-末端匹配和错配碱基对所有组合的延伸效率。转换错配,即A(引物).C、C.A、G.T和T.G的延伸效率比其正确配对的对应物低10^(-3)至10^(-4)倍。颠换错配的延伸相对效率,T.C和T.T为10^(-4)至10^(-5),A.A约为10^(-6),G.A、A.G、G.G和C.C则小于10^(-6)。颠换错配C(引物).T的延伸效率很高,与正确的A.T碱基对相比约为10^(-2)。C.T错配延伸异常容易不太可能是由引物-模板错配引起的。观察到Taq聚合酶与正确配对和错配的引物-模板3'-末端具有相似的亲和力。因此,Taq聚合酶不能有效延伸错配似乎是该酶的固有特性,而非由于无法结合到3'-末端错配。对于几乎所有错配(C.T除外),与禽成髓细胞瘤逆转录酶和HIV-1逆转录酶相比,Taq聚合酶对错配延伸的辨别能力高出约100至1000倍,后两者能宽松地延伸大多数错配碱基对。在45℃、55℃和70℃下测量了Taq聚合酶的相对错配延伸效率,发现其与温度无关。错配延伸数据对于设计使用PCR区分单核苷酸差异序列的实验应该很重要。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/786e/334186/e4820bca7c5b/nar00228-0172-a.jpg

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