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McClure, C. P.

Publications and source records attributed to McClure, C. P..

2 recordsLinked to original sources

Retrieval of the Complete Coding Sequence of the UK-Endemic Tatenale Orthohantavirus Reveals Extensive Strain Variation and Supports its Classification as a Novel Species

Hantaviruses are a diverse group of single-stranded, negative-sensed RNA viruses, known to cause sporadic outbreaks of potentially fatal human disease. To date, only two Orthohantavirus species have been detected in the UK - Seoul virus and Tatenale. Whilst Seoul is known to be pathogenic in humans, only partial fragments of Tatenale have been recovered, precluding any accurate analysis of its phylogeny or potential pathogenicity. To overcome this shortfall we used a degenerate primer PCR method to identify Tatenale-infection in rodents living in two separate locations in the UK. PCR positive samples were then subjected to either unbiased high-throughput sequencing or overlapping PCR product sequencing to recover the complete coding sequence of the Tatenale virus. This analysis provided in-depth insight into the evolutionary origins of this recently identified UK Orthohantavirus and unequivocally showed that Tatenale virus meets the established criteria for classification as a novel species. Crucially, our data will facilitate in vitro investigation into the zoonotic potential of Tatenale virus.

microbiology

Extraction-free direct PCR from dried serum spots permits HBV genotyping and RAS identification by Sanger and minION sequencing

In order to achieve the commitment made by the World Health Organisation to eliminate viral hepatitis by 2030, it is essential that clinicians can obtain basic sequencing data for hepatitis B virus (HBV) infected patients. While accurate diagnosis of HBV is achievable in most clinical settings, genotyping and identification of resistance-associated substitutions (RAS) present a practical challenge in regions with limited healthcare and biotechnology infrastructure. Here we outline two workflows for generating clinically relevant HBV sequence data directly from dried serum spot (DSS) cards without DNA extraction using either Sanger, or the portable MinION sequencing platforms. Data obtained from the two platforms were highly consistent and allowed determination of HBV genotype and RAS. This is the first demonstration of MinION sequencing from DSS, illustrating the broad utility of this sequencing technology. We demonstrated the clinical application of this technology using sera sampled on DSS cards obtained from both Iraq and Brazil. The sample stability provided by DSS cards, combined with the rapid PCR and sequencing protocols will enable regional/national centres to provide information relevant to patient management. By providing viable workflows for both the Sanger and MinION sequencing platforms, which vary greatly in the infrastructure and expertise required, we demonstrate that MinION sequencing is a viable method for HBV genotyping in resource-limited settings. These workflows could also be applied to sequencing of other blood borne DNA viruses and bacterial pathogens.

microbiology