The 3'Untranslated region is a critical determinant of Getah virus replication, pathogenesis, and vector competence.

Tongwei Ren1 Peijie Li1 Muyang Liu1 Liping Zhang1 Zhen Zhong1 Guowei Wang1 Xindong Wang1 Lingshan Zhou1 Yifeng Qin1,2,3 Kang Ouyang1,2,3 Yeshi Yin1,2,3 Ying Chen1,2,3 Weijian Huang1,2,3 Zuzhang Wei1,2,3
Affiliations 3 institutions
  1. Laboratory of Animal Infectious Diseases and Molecular Immunology, College of Animal Science and Technology, Guangxi University, Nanning, China.
  2. Guangxi Zhuang Autonomous Region Engineering Research Center of Veterinary Biologics, Nanning, China.
  3. Guangxi Key Laboratory of Animal Reproduction, Breeding and Disease Control, Nanning, China.

Abstract

Getah virus (GETV), a mosquito-borne arbovirus of the Alphavirus genus, poses an emerging threat to livestock economies and public health, underscored by its expanding host range and association with recent outbreaks of heightened virulence. While the functional significance of the 3' untranslated region (3'UTR) in alphavirus biology is recognized, its specific role in GETV remained undefined. Herein, we elucidate the virological functions of the GETV 3'UTR through a reverse genetics approach, generating a panel of viruses with targeted deletions. We demonstrate that the GETV 3'UTR is remarkably plastic, tolerating a consecutive deletion of up to 310 nucleotides while remaining viable. Deletion of conserved repeat sequence elements (RSEs) induced a cell-type-specific replication deficiency in vitro and significantly attenuated virulence in a murine model. A comprehensive deletion mutant (rGETV-KO310) exhibited further impaired replication kinetics in vitro and was profoundly attenuated in vivo, eliciting only transient morbidity with no mortality in both neonatal and weaned mice. Furthermore, this mutant displayed a significant defect in early colonization within mosquito vectors, indicating a role in vector competence. Comparative transcriptomic profiling of knee joints revealed that attenuation correlates with the altered modulation of critical host immune responses, notably the interferon and MAPK signaling pathways. Collectively, these findings establish the GETV 3'UTR as a pivotal regulator of viral fitness, pathogenesis, and transmission. This work provides a foundational rationale for the strategic development of live-attenuated vaccine candidates based on targeted 3'UTR attenuation.

Supporting text Virus Host Location
3’ untranslated region 1 Getah virus 5 mutational analysis 2 pathogenicity 54 transmission potential 2 viral replication 7

Evidence records

1 total
Experimental Infection
1 records · 1 evidence types
Evidence type
1 records
OVE11295
Key finding

The rGETV-KO310 deletion mutant of Getah virus was profoundly attenuated in vivo, causing only transient morbidity and no mortality in neonatal and weaned mice.

Virus
Host
Location
Not specified
Supporting text

A comprehensive deletion mutant (rGETV-KO310) exhibited further impaired replication kinetics in vitro and was profoundly attenuated in vivo, eliciting only transient morbidity with no mortality in both neonatal and weaned mice.

Method
in vivo infection | clinical observation of morbidity and mortality
Experimental system
murine model