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一步法 RT-PCR 的逆转录酶动力学。

Reverse transcriptase kinetics for one-step RT-PCR.

机构信息

Department of Pathology, University of Utah Health Sciences Center, Salt Lake City, UT, 84132, USA.

Department of Pathology, University of Utah Health Sciences Center, Salt Lake City, UT, 84132, USA.

出版信息

Anal Biochem. 2020 Jul 15;601:113768. doi: 10.1016/j.ab.2020.113768. Epub 2020 May 13.

Abstract

Understanding reverse transcriptase (RT) activity is critical for designing fast one-step RT-PCRs. We report a stopped-flow assay that monitors SYBR Green I fluorescence to investigate RT activity in PCR conditions. We studied the influence of PCR conditions on RT activity and assessed the accuracy of cDNA synthesis predictions for one-step RT-PCR. Nucleotide incorporation increased from 26 to 89 s between 1.5 and 6 mM MgCl but was largely unaffected by changes in KCl. Conversely, increasing KCl from 15 to 75 mM increased apparent rate constants for RT-oligonucleotide binding (0.010-0.026 nM s) and unbinding (0.2-1.5 s). All rate constants increased between 22 and 42 °C. When evaluated by PCR quantification cycle, cDNA predictions differed from experiments using RNase H+ RT (average 1.7 cycles) and RNase H- (average 4.5 cycles). Decreasing H+ RT concentrations 10 to 10-fold from manufacturer recommendations improved cDNA predictions (average 0.8 cycles) and increased RT-PCR assay efficiency. RT activity assays and models can be used to aid assay design and improve the speed of RT-PCRs. RT type and concentration must be selected to promote rapid cDNA synthesis but minimize nonspecific amplification. We demonstrate 2-min one-step RT-PCR of a Zika virus target using reduced RT concentrations and extreme PCR.

摘要

了解逆转录酶 (RT) 活性对于设计快速一步法 RT-PCR 至关重要。我们报告了一种停止流动分析,该分析监测 SYBR Green I 荧光以研究 PCR 条件下的 RT 活性。我们研究了 PCR 条件对 RT 活性的影响,并评估了一步法 RT-PCR 中 cDNA 合成预测的准确性。在 1.5 和 6 mM MgCl 之间,核苷酸掺入从 26 增加到 89 s,但 KCl 的变化基本没有影响。相反,将 KCl 从 15 增加到 75 mM 增加了 RT-寡核苷酸结合(0.010-0.026 nM s)和非结合(0.2-1.5 s)的表观速率常数。所有速率常数在 22 和 42°C 之间增加。当通过 PCR 定量循环评估时,cDNA 预测与使用 RNase H+ RT(平均 1.7 个循环)和 RNase H-(平均 4.5 个循环)的实验不同。将制造商建议的 H+ RT 浓度降低 10 到 10 倍可改善 cDNA 预测(平均 0.8 个循环)并提高 RT-PCR 测定效率。RT 活性测定和模型可用于辅助测定设计并提高 RT-PCR 的速度。必须选择 RT 类型和浓度以促进快速 cDNA 合成,但要最小化非特异性扩增。我们使用降低的 RT 浓度和极端 PCR 演示了 Zika 病毒靶标的 2 分钟一步法 RT-PCR。

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