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在Klentaq DNA聚合酶中,用异亮氨酸(Ile)替代亮氨酸(Leu)(第707位)会降低该酶的扩增能力。

Substitution of Ile(707) for Leu in Klentaq DNA polymerase reduces the amplification capacity of the enzyme.

作者信息

Davalieva K, Efremov D G

机构信息

Research Centre for Genetic Engineering and Biotechnology, Macedonian Academy of Sciences and Arts, Krste Misirkov 2, 1000 Skopje, R. Macedonia.

出版信息

Prilozi. 2009 Dec;30(2):57-69.

Abstract

The high yield and specificity of PCR amplifications are affected by DNA polymerase activity at room temperature. One way of preventing this unwanted activity is by genetic modifications of the DNA polymerase. For Taq DNA polymerase, mutations in the gene (Glu626Lys, Trp706Arg, Ile707Leu and Glu708Asp), when introduced individually or in certain combinations, were found to contribute to a significant decrease of the enzyme activity at room temperature. The aim of this study was to evaluate the usefulness of the Ile707Leu cold-sensitive mutation in the N-terminal deletional variant of Taq DNA polymerase in PCR reaction. The Ile(707) to Leu substitution was introduced to Klentaq278 by site-directed mutagenesis. Normal and mutant DNA polymerases were expressed under a tac promoter and purified to homogeneity. The mutant polymerase showed reduced polymerase activity at room temperature by up to 12 times and no significant change in thermostability, compared to Klentaq278 DNA polymerase. The major effect of the amino acid substitution was the reduction of the amplification capacity of the polymerase. Mutant polymerase could not amplify fragments over 1 kb. In conclusion, the substitution of Ile707Leu in Klentaq278 DNA polymerase reduces the overall processivity of the enzyme and therefore limits the application of this DNA polymerase in PCR.

摘要

聚合酶链式反应(PCR)扩增的高产量和特异性会受到DNA聚合酶在室温下活性的影响。防止这种不必要活性的一种方法是对DNA聚合酶进行基因改造。对于Taq DNA聚合酶,当单独或以某些组合引入基因中的突变(Glu626Lys、Trp706Arg、Ile707Leu和Glu708Asp)时,发现会导致该酶在室温下的活性显著降低。本研究的目的是评估Taq DNA聚合酶N端缺失变体中Ile707Leu冷敏感突变在PCR反应中的实用性。通过定点诱变将Ile(707)替换为Leu引入到Klentaq278中。正常和突变的DNA聚合酶在tac启动子下表达并纯化至同质。与Klentaq278 DNA聚合酶相比,突变聚合酶在室温下的聚合酶活性降低了多达12倍,热稳定性没有显著变化。氨基酸替换的主要影响是聚合酶扩增能力的降低。突变聚合酶无法扩增超过1 kb的片段。总之,在Klentaq278 DNA聚合酶中用Ile707Leu进行替换会降低该酶的整体持续合成能力,因此限制了这种DNA聚合酶在PCR中的应用。

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