A newly identified virus–cell hybrid structure allows viruses to spread faster and more aggressively by hitching a ride on ...
Scientists at Harvard Medical School and Boston University Chobanian & Avedisian School of Medicine have mapped a critical ...
Ancient viral fossils buried in our DNA are offering fresh clues about how today’s respiratory pathogens infect and spread. By tracing the shared architecture between long-extinct retroviruses and ...
A University of Maryland, Baltimore County (UMBC) study, published in Nature Communications, uncovers how enteroviruses—including those causing polio, myocarditis, encephalitis, and the common ...
Researchers have profiled the molecular structure and features of a key part of the deadly Nipah virus. Experiments in cells showe how changes in the viral polymerase -- a protein involved in viral ...
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