Quantification of Type I Interferon Inhibition by Viral Proteins: Ebola Virus as a Case Study

Author:

Locke MacauleyORCID,Lythe GrantORCID,López-García MartínORCID,Muñoz-Fontela CésarORCID,Carroll MilesORCID,Molina-París CarmenORCID

Abstract

Type I interferons (IFNs) are cytokines with both antiviral properties and protective roles in innate immune responses to viral infection. They induce an antiviral cellular state and link innate and adaptive immune responses. Yet, viruses have evolved different strategies to inhibit such host responses. One of them is the existence of viral proteins which subvert type I IFN responses to allow quick and successful viral replication, thus, sustaining the infection within a host. We propose mathematical models to characterise the intra-cellular mechanisms involved in viral protein antagonism of type I IFN responses, and compare three different molecular inhibition strategies. We study the Ebola viral protein, VP35, with this mathematical approach. Approximate Bayesian computation sequential Monte Carlo, together with experimental data and the mathematical models proposed, are used to perform model calibration, as well as model selection of the different hypotheses considered. Finally, we assess if model parameters are identifiable and discuss how such identifiability can be improved with new experimental data.

Funder

Los Alamos National Laboratory

EPSRC

Publisher

MDPI AG

Subject

Virology,Infectious Diseases

Cited by 3 articles. 订阅此论文施引文献 订阅此论文施引文献,注册后可以免费订阅5篇论文的施引文献,订阅后可以查看论文全部施引文献

1. Faster Groebner bases for Lie derivatives of ODE systems via monomial orderings;Proceedings of the 2024 International Symposium on Symbolic and Algebraic Computation;2024-07-16

2. The Utilization and Development of Viral Vectors in Vaccines as a Prophylactic Treatment Against Ebola Virus as an Emerging and Zoonotic Infectious Disease;Mini-Reviews in Medicinal Chemistry;2024-02

3. Ebola: Virology, Clinical Considerations, and Outbreak Response and Prevention;Global Virology IV: Viral Disease Diagnosis and Treatment Delivery in the 21st Century;2024

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