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通过校对聚合酶对引物编辑进行剖析和调整。

Dissecting and tuning primer editing by proofreading polymerases.

机构信息

University of Minnesota Genomics Center, Minneapolis, MN 55455, USA.

Department of Genetics, Cell Biology, and Development, University of Minnesota, Minneapolis, MN 55455, USA.

出版信息

Nucleic Acids Res. 2021 Sep 7;49(15):e87. doi: 10.1093/nar/gkab471.

Abstract

Proofreading polymerases have 3' to 5' exonuclease activity that allows the excision and correction of mis-incorporated bases during DNA replication. In a previous study, we demonstrated that in addition to correcting substitution errors and lowering the error rate of DNA amplification, proofreading polymerases can also edit PCR primers to match template sequences. Primer editing is a feature that can be advantageous in certain experimental contexts, such as amplicon-based microbiome profiling. Here we develop a set of synthetic DNA standards to report on primer editing activity and use these standards to dissect this phenomenon. The primer editing standards allow next-generation sequencing-based enzymological measurements, reveal the extent of editing, and allow the comparison of different polymerases and cycling conditions. We demonstrate that proofreading polymerases edit PCR primers in a concentration-dependent manner, and we examine whether primer editing exhibits any sequence specificity. In addition, we use these standards to show that primer editing is tunable through the incorporation of phosphorothioate linkages. Finally, we demonstrate the ability of primer editing to robustly rescue the drop-out of taxa with 16S rRNA gene-targeting primer mismatches using mock communities and human skin microbiome samples.

摘要

校对聚合酶具有 3' 到 5' 的外切核酸酶活性,允许在 DNA 复制过程中切除和纠正错误掺入的碱基。在之前的研究中,我们证明,除了纠正取代错误和降低 DNA 扩增的错误率外,校对聚合酶还可以编辑 PCR 引物以匹配模板序列。引物编辑是一种在某些实验环境中很有优势的特性,例如基于扩增子的微生物组分析。在这里,我们开发了一套合成 DNA 标准品来报告引物编辑活性,并使用这些标准品来剖析这一现象。这些引物编辑标准品允许基于下一代测序的酶学测量,揭示编辑的程度,并允许比较不同的聚合酶和循环条件。我们证明,校对聚合酶以浓度依赖的方式编辑 PCR 引物,并且我们研究了引物编辑是否表现出任何序列特异性。此外,我们使用这些标准品来表明,通过引入硫代磷酸酯键,引物编辑是可调节的。最后,我们展示了引物编辑能够通过使用模拟群落和人体皮肤微生物组样本,稳健地挽救具有 16S rRNA 基因靶向引物错配的分类单元的缺失。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/da16/8421222/d07925a1c28f/gkab471fig1.jpg

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