1. Rab27a GTPase and its effector Myosin Va are host factors required for efficient Oropouche virus cell egress.
- Author
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Concha JO, Gutierrez K, Barbosa N, Rodrigues RL, de Carvalho AN, Tavares LA, Rudd JS, Costa CS, Andrade BYG, Espreafico EM, Crump CM, and daSilva LLP
- Subjects
- Humans, Bunyaviridae Infections metabolism, Bunyaviridae Infections virology, Orthobunyavirus metabolism, Orthobunyavirus physiology, Virus Replication physiology, Animals, Host-Pathogen Interactions, rab27 GTP-Binding Proteins metabolism, Virus Release physiology, Myosin Type V metabolism, Myosin Type V genetics, Myosin Heavy Chains metabolism
- Abstract
Oropouche fever, a debilitating illness common in South America, is caused by Oropouche virus (OROV), an arbovirus. OROV belongs to the Peribunyaviridae family, a large group of RNA viruses. Little is known about the biology of Peribunyaviridae in host cells, especially assembly and egress processes. Our research reveals that the small GTPase Rab27a mediates intracellular transport of OROV induced compartments and viral release from infected cells. We show that Rab27a interacts with OROV glycoproteins and colocalizes with OROV during late phases of the infection cycle. Moreover, Rab27a activity is required for OROV trafficking to the cell periphery and efficient release of infectious particles. Consistently, depleting Rab27a's downstream effector, Myosin Va, or inhibiting actin polymerization also hinders OROV compartments targeting to the cell periphery and infectious viral particle egress. These data indicate that OROV hijacks Rab27a activity for intracellular transport and cell externalization. Understanding these crucial mechanisms of OROV's replication cycle may offer potential targets for therapeutic interventions and aid in controlling the spread of Oropouche fever., Competing Interests: The authors have declared that no competing interests exist., (Copyright: © 2024 Concha et al. This is an open access article distributed under the terms of the Creative Commons Attribution License, which permits unrestricted use, distribution, and reproduction in any medium, provided the original author and source are credited.)
- Published
- 2024
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