{"title":"Error Rate Comparison during Polymerase Chain Reaction by DNA Polymerase.","authors":"Peter McInerney, Paul Adams, Masood Z Hadi","doi":"10.1155/2014/287430","DOIUrl":null,"url":null,"abstract":"<p><p>As larger-scale cloning projects become more prevalent, there is an increasing need for comparisons among high fidelity DNA polymerases used for PCR amplification. All polymerases marketed for PCR applications are tested for fidelity properties (i.e., error rate determination) by vendors, and numerous literature reports have addressed PCR enzyme fidelity. Nonetheless, it is often difficult to make direct comparisons among different enzymes due to numerous methodological and analytical differences from study to study. We have measured the error rates for 6 DNA polymerases commonly used in PCR applications, including 3 polymerases typically used for cloning applications requiring high fidelity. Error rate measurement values reported here were obtained by direct sequencing of cloned PCR products. The strategy employed here allows interrogation of error rate across a very large DNA sequence space, since 94 unique DNA targets were used as templates for PCR cloning. The six enzymes included in the study, Taq polymerase, AccuPrime-Taq High Fidelity, KOD Hot Start, cloned Pfu polymerase, Phusion Hot Start, and Pwo polymerase, we find the lowest error rates with Pfu, Phusion, and Pwo polymerases. Error rates are comparable for these 3 enzymes and are >10x lower than the error rate observed with Taq polymerase. Mutation spectra are reported, with the 3 high fidelity enzymes displaying broadly similar types of mutations. For these enzymes, transition mutations predominate, with little bias observed for type of transition. </p>","PeriodicalId":74217,"journal":{"name":"Molecular biology international","volume":"2014 ","pages":"287430"},"PeriodicalIF":0.0000,"publicationDate":"2014-01-01","publicationTypes":"Journal Article","fieldsOfStudy":null,"isOpenAccess":false,"openAccessPdf":"https://sci-hub-pdf.com/10.1155/2014/287430","citationCount":"172","resultStr":null,"platform":"Semanticscholar","paperid":null,"PeriodicalName":"Molecular biology international","FirstCategoryId":"1085","ListUrlMain":"https://doi.org/10.1155/2014/287430","RegionNum":0,"RegionCategory":null,"ArticlePicture":[],"TitleCN":null,"AbstractTextCN":null,"PMCID":null,"EPubDate":"2014/8/17 0:00:00","PubModel":"Epub","JCR":"","JCRName":"","Score":null,"Total":0}
引用次数: 172
Abstract
As larger-scale cloning projects become more prevalent, there is an increasing need for comparisons among high fidelity DNA polymerases used for PCR amplification. All polymerases marketed for PCR applications are tested for fidelity properties (i.e., error rate determination) by vendors, and numerous literature reports have addressed PCR enzyme fidelity. Nonetheless, it is often difficult to make direct comparisons among different enzymes due to numerous methodological and analytical differences from study to study. We have measured the error rates for 6 DNA polymerases commonly used in PCR applications, including 3 polymerases typically used for cloning applications requiring high fidelity. Error rate measurement values reported here were obtained by direct sequencing of cloned PCR products. The strategy employed here allows interrogation of error rate across a very large DNA sequence space, since 94 unique DNA targets were used as templates for PCR cloning. The six enzymes included in the study, Taq polymerase, AccuPrime-Taq High Fidelity, KOD Hot Start, cloned Pfu polymerase, Phusion Hot Start, and Pwo polymerase, we find the lowest error rates with Pfu, Phusion, and Pwo polymerases. Error rates are comparable for these 3 enzymes and are >10x lower than the error rate observed with Taq polymerase. Mutation spectra are reported, with the 3 high fidelity enzymes displaying broadly similar types of mutations. For these enzymes, transition mutations predominate, with little bias observed for type of transition.
随着大规模克隆项目变得越来越普遍,越来越需要对用于PCR扩增的高保真DNA聚合酶进行比较。所有市场上用于PCR应用的聚合酶都由供应商测试保真度特性(即错误率测定),并且许多文献报告都讨论了PCR酶的保真度。尽管如此,由于不同研究之间在方法和分析上的差异,通常很难对不同的酶进行直接比较。我们测量了PCR应用中常用的6种DNA聚合酶的错误率,包括3种通常用于要求高保真度的克隆应用的聚合酶。本文报道的错误率测量值是通过克隆PCR产物的直接测序获得的。这里采用的策略允许在非常大的DNA序列空间中询问错误率,因为94个独特的DNA靶点被用作PCR克隆的模板。在Taq聚合酶、AccuPrime-Taq High Fidelity、KOD Hot Start、克隆Pfu聚合酶、Phusion Hot Start和ppo聚合酶这6种酶中,我们发现Pfu、Phusion和ppo聚合酶的错误率最低。这3种酶的错误率相当,比Taq聚合酶的错误率低10倍以上。突变谱报道,与3高保真酶显示大致相似类型的突变。对于这些酶,过渡突变占主导地位,几乎没有观察到过渡类型的偏差。