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Jefferson, V. A.

Publications and source records attributed to Jefferson, V. A..

3 recordsLinked to original sources

Structural and phenotypic plasticity of the RBD loop2 region is a key determinant for HKU5r-CoVs' emergence in mink

The emergence of novel coronaviruses from animal reservoirs continues to pose a significant zoonotic threat. Here, we investigate the evolutionary origins and virological properties of a recently reported mink-derived HKU5-related coronavirus (nvHKU5r-CoV). Phylogenetic and recombination analyses reveal that nvHKU5r-CoV originated from bat HKU5-like viruses circulating in southeastern China. We characterize the spike loop2 region as a critical determinant of ACE2 receptor specificity, directly interacting with the receptor, and show that the bat HKU5r-CoV with the closest loop2 sequence to nvHKU5r-CoV could already utilize mink ACE2. Using AlphaFold3, we predicted spike-ACE2 binding interfaces consistent with our experimental infectivity results. Targeted mutagenesis demonstrates that a single amino acid substitution (R548S) enables robust entry of nvHKU5r-CoV via human ACE2. We further show that this substitution can arise in vitro during hACE2-expressing cell infection with a replication-competent VSV system. Molecular dating suggests that nvHKU5r-CoV transmitted from bats to mink within the last decade, consistent with an expansion of mink fur farming in China. Overall, our findings highlight the zoonotic potential of these viruses and the molecular and structural determinants underlying it, while emphasizing fur farming as a major risk factor for how bat HKU5r-CoVs can transmit to farmed animals and ultimately humans.

microbiology↗

Aminopeptidase N is a receptor for hedgehog merbecoviruses

Merbecoviruses, closely related to the highly pathogenetic Middle East Respiratory Syndrome Coronavirus (MERS-CoV), circulate in hedgehogs throughout Europe and Asia, raising concerns about zoonotic transmission to humans and domestic animals. Unfortunately, how these viruses enter host cells remains unknown, hindering experimental studies. Here, we tested known coronavirus receptor orthologues from European hedgehogs (Erinaceus europaeus) and identified Aminopeptidase N (APN) as an entry receptor for hedgehog merbecoviruses. We confirm this result with single-cycle pseudotype and replication-competent virus experiments as well as protein binding assays. A screen of 30 mammalian APN orthologues reveals restricted cross-species receptor use. Cryo-electron microscopy analysis of the viral glycoprotein-receptor complex shows a unique interface distinct from known coronavirus spike:APN interactions, providing a molecular basis for species barriers. These findings expand the known range of receptor use not only within merbecoviruses but also betacoronaviruses, improving our understanding of betacoronavirus receptors, and informing risk assessments for viral emergence.

microbiology↗

Time-course Profiling of Bovine Herpesvirus Type 1 and Host Cell Transcriptomes using Multiplatform Sequencing

Long-read sequencing (LRS) has become a standard approach for transcriptome analysis in recent years. This technology is also used for the identification and annotation of genes of various organisms, including viruses. Bovine herpesvirus type 1 (BoHV-1) is an important pathogen of cattle worldwide. However, the transcriptome of this virus is still largely unannotated. This study reports the profiling of the dynamic lytic transcriptome of BoHV-1 using two long-read sequencing (LRS) techniques, the Oxford Nanopore Technology (ONT) MinION, and the Illumina LoopSeq synthetic LRS methods, using multiple library preparation protocols. In this work, we annotated viral mRNAs and non-coding transcripts, and a large number of transcript isoforms, including transcription start and end sites, as well as splice variants of BoHV-1. Very long polycistronic and complex viral transcripts were also detected. Our analysis demonstrated an extremely complex pattern of transcriptional overlaps formed by transcriptional read-throughs or overlapping the 5-untranslated regions of divergently-oriented transcripts. The impact of the viral infection on the host cell transcriptome was also assessed. Our results demonstrate that genes associated with antiviral response as well as viral transcription and translation are upregulated.

genomics↗