Abstract
Because of the constant threat posed by emerging infectious diseases and the limitations of existing approaches used to identify new pathogens, there is a great demand for new technological methods for viral discovery. We describe herein a DNA microarray-based platform for novel virus identification and characterization. Central to this approach was a DNA microarray designed to detect a wide range of known viruses as well as novel members of existing viral families; this microarray contained the most highly conserved 70mer sequences from every fully sequenced reference viral genome in GenBank. During an outbreak of severe acute respiratory syndrome (SARS) in March 2003, hybridization to this microarray revealed the presence of a previously uncharacterized coronavirus in a viral isolate cultivated from a SARS patient. To further characterize this new virus, approximately 1 kb of the unknown virus genome was cloned by physically recovering viral sequences hybridized to individual array elements. Sequencing of these fragments confirmed that the virus was indeed a new member of the coronavirus family. This combination of array hybridization followed by direct viral sequence recovery should prove to be a general strategy for the rapid identification and characterization of novel viruses and emerging infectious disease.
MeSH Terms
Base Sequence
Communicable Diseases, Emerging/diagnosis,virology
Genes, Viral
Genetic Techniques
Genome, Viral
Humans
Molecular Sequence Data
Nucleic Acid Hybridization
Oligonucleotide Array Sequence Analysis/methods
Polymerase Chain Reaction
SARS Virus/genetics
Sequence Analysis, DNA
Severe Acute Respiratory Syndrome/genetics
Authors & Affiliations
14 authors, click to expand affiliations / ORCID
Wang David
Department of Biochemistry and Biophysics, University of California San Francisco, USA.
Urisman Anatoly
Liu Yu-Tsueng
Springer Michael
Ksiazek Thomas G
Erdman Dean D
Mardis Elaine R
Hickenbotham Matthew
Magrini Vincent
Eldred James
Latreille J Phillipe
Wilson Richard K
Ganem Don
DeRisi Joseph L
Conflict of Interest
The authors have declared that no conflicts of interest exist.
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