DOI: 10.1021/acsinfecdis.6c00293 ISSN: 2373-8227

Performance of a Group II Intron Reverse Transcriptase from Anoxybacillus flavithermus in Duplex RT-LAMP for SARS-CoV-2 Detection

Igor P. Oscorbin, Elizaveta D. Baranova, Maxim L. Filipenko

Abstract

Reverse transcriptases from bacterial group II introns (GII RTs) demonstrate superior thermostability and processivity compared with retroviral counterparts. While GII RTs have proven advantageous for RNA-seq, their performance in other applications, such as reverse transcription loop-mediated isothermal amplification (RT-LAMP), remains poorly studied. RT-LAMP is a widely used method suitable for point-of-care diagnostics of RNA viruses and other pathogens. In this study, we compared the performance in RT-LAMP of GII RT from the thermophilic bacterium Anoxybacillus flavithermus (Afl RT) with that of the retroviral RNase H-deficient reverse transcriptase M-MuLV. A duplex RT-LAMP targeting SARS-CoV-2 and MS2 phage genomic RNA (internal control) served as a model. Preheating at 95 °C and 1.5 M betaine increased the efficiency of RT-LAMP with both reverse transcriptases. Under these conditions, the optimal temperature range and time of reverse transcription were similar for both enzymes, 55–60 °C and 15 min, respectively. However, high concentrations of Afl RT (>50 U/reaction) inhibited RT-LAMP. Notably, RT-LAMP with Afl RT demonstrated higher sensitivity for detecting both in vitro-transcribed RNA fragments and SARS-CoV-2–positive samples. In validation against RT-qPCR using nasal swabs (200 SARS-CoV-2-positive and 200 negative samples) from patients with respiratory symptoms, the observed sensitivity of RT-LAMP with Afl RT was 100% (200/200; 95% CI, 98.17–100%), whereas with M-MuLV RT, sensitivity was 97.0% (194/200; 95% CI, 93.58–98.89%). Specificity was 100% for both RTs (200/200; 95% CI, 98.17–100%). These observations demonstrate that Afl RT is suitable for RT-LAMP and may increase the sensitivity of LAMP-based diagnostics.