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嗜热栖热菌DNA聚合酶的DNA合成保真度——一种具有校对活性的极其耐热的酶。

Fidelity of DNA synthesis by the Thermococcus litoralis DNA polymerase--an extremely heat stable enzyme with proofreading activity.

作者信息

Mattila P, Korpela J, Tenkanen T, Pitkänen K

机构信息

Finnzymes Oy, Espoo, Finland.

出版信息

Nucleic Acids Res. 1991 Sep 25;19(18):4967-73. doi: 10.1093/nar/19.18.4967.

Abstract

We demonstrate that the DNA polymerase isolated from Thermococcus litoralis (VentTM DNA polymerase) is the first thermostable DNA polymerase reported having a 3'----5' proofreading exonuclease activity. This facilitates a highly accurate DNA synthesis in vitro by the polymerase. Mutational frequencies observed in the base substitution fidelity assays were in the range of 30 x 10(-6). These values were 5-10 times lower compared to other thermostable DNA polymerases lacking the proofreading activity. All classes of DNA polymerase errors (transitions, transversions, frameshift mutations) were assayed using the forward mutational assay (1). The mutation frequencies of Thermococcus litoralis DNA polymerase varied between 15-35 x 10(-4) being 2-4 times lower than the respective values obtained using enzymes without proofreading activity. We also noticed that the fidelity of the DNA polymerase from Thermococcus litoralis responds to changes in dNTP concentration, units of enzyme used per one reaction and the concentration of MgSO4 relative to the total concentration of dNTPs present in the reaction. The high fidelity DNA synthesis in vitro by Thermococcus litoralis DNA polymerase provides good possibilities for maintaining the genetic information of original target DNA sequences intact in the DNA amplification applications.

摘要

我们证明,从嗜热栖热菌中分离出的DNA聚合酶(VentTM DNA聚合酶)是首个被报道具有3'→5'校对核酸外切酶活性的热稳定DNA聚合酶。这有助于该聚合酶在体外进行高度精确的DNA合成。在碱基置换保真度测定中观察到的突变频率在30×10⁻⁶范围内。与其他缺乏校对活性的热稳定DNA聚合酶相比,这些值低5至10倍。使用正向突变测定法(1)对所有类型的DNA聚合酶错误(转换、颠换、移码突变)进行了测定。嗜热栖热菌DNA聚合酶的突变频率在15 - 35×10⁻⁴之间,比使用无校对活性的酶获得的相应值低2至4倍。我们还注意到,嗜热栖热菌DNA聚合酶的保真度会对dNTP浓度、每个反应中使用的酶单位以及MgSO₄浓度相对于反应中存在的dNTP总浓度的变化作出反应。嗜热栖热菌DNA聚合酶在体外进行的高保真DNA合成,为在DNA扩增应用中完整保留原始靶DNA序列的遗传信息提供了良好的可能性。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/07a6/328798/6034097049b4/nar00098-0158-a.jpg

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