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Engineering of a thermostable viral polymerase using metagenome-derived diversity for highly sensitive and specific RT-PCR

机译:利用元基因组衍生的多样性对热稳定的病毒聚合酶进行工程改造,以实现高灵敏度和特异性的RT-PCR

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摘要

Reverse transcription is an essential initial step in the analysis of RNA for most PCR-based amplification and detection methods. Despite advancements in these technologies, efficient conversion of RNAs that form stable secondary structures and double-stranded RNA targets remains challenging as retroviral-derived reverse transcriptases are often not sufficiently thermostable to catalyze synthesis at temperatures high enough to completely relax these structures. Here we describe the engineering and improvement of a thermostable viral family A polymerase with inherent reverse transcriptase activity for use in RT-PCR. Using the 3173 PyroPhage polymerase, previously identified from hot spring metagenomic sampling, and additional thermostable orthologs as a source of natural diversity, we used gene shuffling for library generation and screened for novel variants that retain high thermostability and display elevated reverse transcriptase activity. We then created a fusion enzyme between a high-performing variant polymerase and the 5′→3′ nuclease domain of Taq DNA polymerase that provided compatibility with probe-based detection chemistries and enabled highly sensitive detection of structured RNA targets. This technology enables a flexible single-enzyme RT-PCR system that has several advantages compared with standard heat-labile reverse transcription methods.
机译:对于大多数基于PCR的扩增和检测方法而言,逆转录是RNA分析中必不可少的第一步。尽管这些技术取得了进步,但是形成稳定的二级结构和双链RNA靶标的RNA的有效转化仍然具有挑战性,因为逆转录病毒衍生的逆转录酶通常在足够高的温度下无法完全催化这些合成物的热稳定性。在这里,我们描述了用于RT-PCR的具有固有逆转录酶活性的热稳定病毒家族A聚合酶的工程改造和改进。使用3173 PyroPhage聚合酶(先前从温泉宏基因组学采样中鉴定出)和其他热稳定直向同源物作为自然多样性的来源,我们使用基因改组来生成文库,并筛选出保留了高热稳定性并显示出较高逆转录酶活性的新型变体。然后,我们在高性能变体聚合酶和Taq DNA聚合酶的5'→3'核酸酶结构域之间创建了一种融合酶,该融合酶可与基于探针的检测化学方法兼容,并能够高度敏感地检测结构化RNA靶标。与标准的不耐热逆转录方法相比,该技术可实现灵活的单酶RT-PCR系统,该系统具有多个优点。

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