Multi-omics analysis of SFTS virus infection in Rhipicephalus microplus cells reveals antiviral tick factors
Abstract
Abstract The increasing prevalence of tick-borne arboviral infections worldwide necessitates advanced control strategies, particularly those targeting vectors, to mitigate the disease burden. However, the cellular interactions between arboviruses and ticks, especially for negative-strand RNA viruses, remain largely unexplored. Here, we employ a proteomics informed by transcriptomics approach to elucidate the cellular response of the Rhipicephalus microplus -derived BME/CTVM6 cell line to severe fever with thrombocytopenia syndrome virus (SFTSV) infection. We generate the de novo transcriptomes and proteomes of SFTSV- and mock-infected tick cells, identifying key host responses and regulatory pathways. Additionally, interactome analysis of the viral nucleoprotein (N) integrated host responses with viral replication and dsRNA-mediated gene silencing screen reveals two anti-SFTSV effectors: the N interacting RNA helicases DHX9 and UPF1. Collectively, our results provide insights into the antiviral responses of R. microplus vector cells and highlight critical SFTSV restriction factors, while enriching transcriptomic and proteomic resources for future research.
Article Details
Authors (11)
Marine J. Petit
Microbes, Infection and Immunity, School of Biosciences, Faculty of Health and Medical Sciences, University of Surrey
Charlotte Flory
Quan Gu
Mazigh Fares
Medical Research Council–University of Glasgow Centre for Virus Research
Douglas Lamont
Alan Score
Kelsey Davies
Medical Research Council–University of Glasgow Centre for Virus Research
Lesley Bell-Sakyi
Department of Infection Biology and Microbiomes, Institute of Infection, Veterinary and Ecological Sciences, University of Liverpool
Pietro Scaturro
Benjamin Brennan
Alain Kohl