SFTSV NSs protein is a tick antiviral RNAi response suppressor

M Mazigh Fares (Medical Research Council–University of Glasgow Centre for Virus Research) M Melanie McFarlane R Rhys H. Parry R Rozeena Arif (Medical Research Council–University of Glasgow Centre for Virus Research) A Andrew T. Clarke (Medical Research Council–University of Glasgow Centre for Virus Research) W Wael Kamel (Medical Research Council–University of Glasgow Centre for Virus Research) K Kelsey Davies (Medical Research Council–University of Glasgow Centre for Virus Research) R Riona Datta-Savage (Biomedical Sciences Research Complex, University of St Andrews) U Ulrich Schwarz-Linek (Biomedical Sciences Research Complex, University of St Andrews) L Lesley Bell-Sakyi (Department of Infection Biology and Microbiomes, Institute of Infection, Veterinary and Ecological Sciences, University of Liverpool) M Marine J. Petit (Microbes, Infection and Immunity, School of Biosciences, Faculty of Health and Medical Sciences, University of Surrey) E Esther Schnettler (Bernhard-Nocht-Institute for Tropical Medicine) A Alfredo Castello A Alain Kohl B Benjamin Brennan

Abstract

Severe fever with thrombocytopenia syndrome virus (SFTSV) is an emerging tick-borne phenuivirus causing high mortality in humans. While the nonstructural protein NSs is dispensable for replication in interferon-deficient mammalian cells, we demonstrate that NSs is essential for viral replication in tick cells. SFTSV infection triggers canonical Dicer-2-mediated antiviral RNA interference (RNAi) in tick cells, producing virus-derived small interfering RNAs (siRNAs) that target viral transcripts for degradation. We show that NSs functions as a viral suppressor of RNAi by selectively engaging and depleting single-stranded RNAs derived from 22-nucleotide siRNAs, likely limiting their incorporation into RNA-induced silencing complexes (RISC). Complementation with a heterologous RNAi suppressor (p19 protein) partially rescues replication of NSs-deficient virus, validating the RNAi-suppressive function of NSs. These findings reveal that successful tick-borne viral replication requires host-specific immune evasion strategies and establish NSs-mediated RNAi suppression as essential for SFTSV persistence in arthropod vectors.

Article Details

Volume / Issue Vol. 123, Issue 20
Published May 19, 2026
ISSN 0027-8424
Publisher National Academy of Sciences

Authors (15)

M

Mazigh Fares

Medical Research Council–University of Glasgow Centre for Virus Research

M

Melanie McFarlane

R

Rhys H. Parry

R

Rozeena Arif

Medical Research Council–University of Glasgow Centre for Virus Research

A

Andrew T. Clarke

Medical Research Council–University of Glasgow Centre for Virus Research

W

Wael Kamel

Medical Research Council–University of Glasgow Centre for Virus Research

K

Kelsey Davies

Medical Research Council–University of Glasgow Centre for Virus Research

R

Riona Datta-Savage

Biomedical Sciences Research Complex, University of St Andrews

U

Ulrich Schwarz-Linek

Biomedical Sciences Research Complex, University of St Andrews

L

Lesley Bell-Sakyi

Department of Infection Biology and Microbiomes, Institute of Infection, Veterinary and Ecological Sciences, University of Liverpool

M

Marine J. Petit

Microbes, Infection and Immunity, School of Biosciences, Faculty of Health and Medical Sciences, University of Surrey

E

Esther Schnettler

Bernhard-Nocht-Institute for Tropical Medicine

A

Alfredo Castello

A

Alain Kohl

B

Benjamin Brennan