Related Experiment Video
Updated: Feb 5, 2026

Preparation and Gene Modification of Nonhuman Primate Hematopoietic Stem and Progenitor Cells
Published on: February 15, 2019
Structure-Guided Identification of a Nonhuman Morbillivirus with Zoonotic Potential
Nurshariza Abdullah1,2, James T Kelly1, Stephen C Graham3
1The Pirbright Institute, Surrey, United Kingdom.
Abstract:
Morbilliviruses infect a broad range of mammalian hosts, including ruminants, carnivores, and humans. The recent eradication of rinderpest virus (RPV) and the active campaigns for eradication of the human-specific measles virus (MeV) have raised significant concerns that the remaining morbilliviruses may emerge in so-called vacated ecological niches. Seeking to assess the zoonotic potential of nonhuman morbilliviruses within human populations, we found that peste des petits ruminants virus (PPRV)-the small-ruminant morbillivirus-is restricted at the point of entry into human cells due to deficient interactions with human SLAMF1-the immune cell receptor for morbilliviruses. Using a structure-guided approach, we characterized a single amino acid change, mapping to the receptor-binding domain in the PPRV hemagglutinin (H) protein, which overcomes this restriction. The same mutation allowed escape from some cross-protective, human patient, anti-MeV antibodies, raising concerns that PPRV is a pathogen with zoonotic potential. Analysis of natural variation within human and ovine SLAMF1 also identified polymorphisms that could correlate with disease resistance. Finally, the mechanistic nature of the PPRV restriction was also investigated, identifying charge incompatibility and steric hindrance between PPRV H and human SLAMF1 proteins. Importantly, this research was performed entirely using surrogate virus entry assays, negating the requirement for in situ derivation of a human-tropic PPRV and illustrating alternative strategies for identifying gain-of-function mutations in viral pathogens.IMPORTANCE 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.
Insights
Peste des petits ruminants virus (PPRV) cannot infect human cells due to receptor incompatibility. A single amino acid change in PPRV enables human cell entry and immune evasion, highlighting zoonotic potential.
Area of Science:
- Virology
- Immunology
- Structural Biology
Background:
- Morbilliviruses, including measles virus (MeV), pose significant public health concerns.
- Eradication efforts for rinderpest virus (RPV) and MeV raise concerns about remaining morbilliviruses emerging in new ecological niches.
- Assessing the zoonotic potential of animal morbilliviruses is crucial for pandemic preparedness.
Purpose of the Study:
- To evaluate the zoonotic potential of peste des petits ruminants virus (PPRV) in human populations.
- To understand the molecular basis of morbillivirus host restriction and identify factors enabling cross-species transmission.
- To investigate the potential for PPRV to emerge as a human pathogen.
Main Methods:
- Structure-guided analysis of the PPRV hemagglutinin (H) protein and its interaction with human SLAMF1.
- Utilized surrogate virus entry assays to assess viral tropism and identify gain-of-function mutations.
- Investigated natural polymorphisms in human and ovine SLAMF1 for potential correlations with disease resistance.
Main Results:
- PPRV entry into human cells is restricted by deficient interactions with human SLAMF1.
- A single amino acid substitution in the PPRV H protein overcomes this restriction, enabling human cell entry.
- The identified mutation also confers resistance to some anti-MeV antibodies, suggesting potential immune evasion.
- Charge incompatibility and steric hindrance were identified as mechanistic barriers to PPRV-human SLAMF1 interaction.
Conclusions:
- PPRV possesses zoonotic potential, as a single amino acid change can enable human cell entry and immune evasion.
- Understanding viral host range determinants is critical for predicting and preventing zoonotic spillover events.
- The study demonstrates a strategy for identifying viral adaptation mutations without generating infectious human-tropic viruses.
Related Concept Videos
Potential Energy
Chemical bonds that form attractive forces between atoms also contain potential energy, called chemical energy. When a chemical reaction...
Structural Isomerism
Isomers are different chemical species that have the same chemical formula. Structural isomerism of coordination compounds can be divided into two subcategories, the linkage isomers and coordination-sphere isomers.
Linkage isomers occur when the coordination compound contains a ligand that can bind to the transition metal center through two different atoms. For example, the CN− ligand can bind through the carbon atom or through the nitrogen atom. Similarly, SCN− can...
Additional Subnuclear Structures
The nucleus contains many membrane-less subnuclear organelles or nuclear bodies, such as nucleoli, Cajal bodies, speckles,...
Standard Electrode Potentials
Cell Potential and Free Energy
Thermodynamics is the branch of physics dealing with the relationship between heat and other forms of energy. In an electrochemical cell, chemical energy is converted into electrical energy.
Thus, a link can be predicted between cell potential, free energy change, and the equilibrium constant for the reaction. Cell potential can also be measured as the oxidant or the reducing strength, and similar acid-base strength measures are reflected in equilibrium...
The Resting Membrane Potential

