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Dissecting Host-virus Interaction in Lytic Replication of a Model Herpesvirus
Published on: October 7, 2011
Molecular signatures in cetacean morbillivirus and host species proteomes: Unveiling the evolutionary dynamics of an
Luca Zinzula1, Sandro Mazzariol2, Giovanni Di Guardo3
1Department of Molecular Structural Biology, Max-Planck Institute of Biochemistry, Martinsried, Germany.
Abstract:
Cetacean morbillivirus (CeMV) infects marine mammals often causing a fatal respiratory and neurological disease. Recently, CeMV has expanded its geographic and host species range, with cases being reported worldwide among dolphins, whales, seals, and other aquatic mammalian species, and therefore has emerged as the most threatening nonanthropogenic factor affecting marine mammal's health and conservation. Extensive research efforts have aimed to understand CeMV epidemiology and ecology, however, the molecular mechanisms underlying its transmission and pathogenesis are still poorly understood. In particular, the field suffers from a knowledge gap on the structural and functional properties of CeMV proteins and their host interactors. Nevertheless, the body of scientific literature produced in recent years has inaugurated new investigational trends, driving future directions in CeMV molecular research. In this mini-review, the most recent literature has been summarized in the context of such research trends, and categorized into four priority research topics, such as (1) the interaction between CeMV glycoprotein and its host cell receptors across several species; (2) the CeMV molecular determinants responsible for different disease phenotype; (3) the host molecular determinants responsible for differential susceptibility to CeMV infection; (4) the CeMV molecular determinants responsible for difference virulence among circulating CeMV strains. Arguably, these are the most urgent topics that need to be investigated and that most promisingly will help to shed light on the details of CeMV evolutionary dynamics in the immediate future.
Insights
Cetacean morbillivirus (CeMV) is a growing threat to marine mammals globally. Understanding CeMV
Area of Science:
- Marine Mammal Health
- Virology
- Conservation Biology
Background:
- Cetacean morbillivirus (CeMV) causes fatal respiratory and neurological disease in marine mammals.
- CeMV has expanded its geographic range and host species, posing a significant threat to marine mammal conservation.
- Molecular mechanisms of CeMV transmission and pathogenesis, including protein-host interactions, remain poorly understood.
Purpose of the Study:
- To review recent literature on CeMV molecular research trends.
- To identify priority research areas for understanding CeMV.
- To address knowledge gaps in CeMV protein structure, function, and host interactions.
Main Methods:
- Mini-review of recent scientific literature on CeMV.
- Categorization of research into four priority topics.
- Synthesis of current understanding of CeMV molecular determinants and host interactions.
Main Results:
- Identified four key research priorities: (1) CeMV glycoprotein-receptor interactions, (2) CeMV determinants of disease phenotype, (3) host determinants of susceptibility, and (4) CeMV determinants of virulence.
- Highlighted the need for further investigation into molecular mechanisms.
- Emphasized the importance of these topics for understanding CeMV evolutionary dynamics.
Conclusions:
- Urgent investigation into the identified priority research topics is crucial.
- Understanding CeMV molecular mechanisms will advance marine mammal health and conservation efforts.
- Future research should focus on protein-host interactions and determinants of CeMV virulence and susceptibility.
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