2021 · 34 citations · 21 references
Sars-cov-2 B.1.1.7 InfectionsViral EvolutionFunctional GenomicsNext-generation SequencingPathogenesisViral PathogenesisSgrna ProfilesVirologyAntibody NeutralizationMedian ExpressionMicrobiologyVirus PhylogenyMedicineBioinformaticsViral GeneticsNon-coding RnaCovid-19
Abstract SARS-CoV-2 lineage B.1.1.7 viruses are more transmissible, may lead to greater clinical severity, and result in modest reductions in antibody neutralization. subgenomic RNA (sgRNA) is produced by discontinuous transcription of the SARS-CoV-2 genome and is a crucial step in the SARS-CoV-2 life cycle. Applying our tool (periscope) to ARTIC Network Oxford Nanopore genomic sequencing data from 4400 SARS-CoV-2 positive clinical samples, we show that normalised sgRNA expression profiles are significantly increased in B.1.1.7 infections (n=879). This increase is seen over the previous dominant circulating lineage in the UK, B.1.177 (n=943), which is independent of genomic reads, E gene cycle threshold and days since symptom onset at sampling. A noncanonical sgRNA which could represent ORF9b is found in 98.4% of B.1.1.7 SARS-CoV-2 infections compared with only 13.8% of other lineages, with a 16-fold increase in median expression. We hypothesise that this is a direct consequence of a triple nucleotide mutation in nucleocapsid (28280:GAT>CAT, D3L) creating a transcription regulatory-like sequence complementary to a region 3’ of the genomic leader. These findings provide a unique insight into the biology of B.1.1.7 and support monitoring of sgRNA profiles in sequence data to evaluate emerging potential variants of concern. One Sentence Summary The recently emerged and more transmissible SARS-CoV-2 lineage B.1.1.7 shows greater subgenomic RNA expression in clinical infections and enhanced expression of a noncanonical subgenomic RNA near ORF9b.
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Hadley Wickham, Mara Averick, Jennifer Bryan et al. · The Journal of Open Source Software · 2019 · 19.7K citations · Full text
The Architecture of SARS-CoV-2 Transcriptome
Dong-Wan Kim, Joo-Yeon Lee, Jeong-Sun Yang et al. · Cell · 2020 · 2.3K citations · Full text
Sars-cov-2 Transcriptome, Viral Evolution, Molecular Biology +3
The coding capacity of SARS-CoV-2
Yaara Finkel, Orel Mizrahi, Aharon Nachshon et al. · Nature · 2020 · 645 citations · Full text