Structure-Guided Identification of a Nonhuman Morbillivirus with Zoonotic Potential
Abdullah N., Kelly JT., Graham SC., Birch J., Gonçalves-Carneiro D., Mitchell T., Thompson RN., Lythgoe KA., Logan N., Hosie MJ., Bavro VN., Willett BJ., Heaton MP., Bailey D.
A significant proportion of viral pandemics occur following zoonotic transmission events, where animal-associated viruses jump species into human populations. In order to provide forewarnings of the emergence of these viruses, it is necessary to develop a better understanding of what determines virus host range, often at the genetic and structural levels. In this study, we demonstrated that the small-ruminant morbillivirus, a close relative of measles, is unable to use human receptors to enter cells; however, a change of a single amino acid in the virus is sufficient to overcome this restriction. This information will be important for monitoring this virus’s evolution in the field. Of note, this study was undertaken in vitro , without generation of a fully infectious virus with this phenotype.