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Updated: May 2, 2026

Feeding of Ticks on Animals for Transmission and Xenodiagnosis in Lyme Disease Research
Published on: August 31, 2013
A critical determinant of neurological disease associated with highly pathogenic tick-borne flavivirus in mice
Kentaro Yoshii1, Yuji Sunden, Kana Yokozawa
1Laboratory of Public Health, Graduate School of Veterinary Medicine, Hokkaido University, Sapporo, Hokkaido, Japan.
Unlabelled:
Tick-borne encephalitis virus (TBEV) and Omsk hemorrhagic fever virus (OHFV) are highly pathogenic tick-borne flaviviruses; TBEV causes neurological disease in humans, while OHFV causes a disease typically identified with hemorrhagic fever. Although TBEV and OHFV are closely related genetically, the viral determinants responsible for these distinct disease phenotypes have not been identified. In this study, chimeric viruses incorporating components of TBEV and OHFV were generated using infectious clone technology, and their pathological characteristics were analyzed in a mouse model to identify virus-specific determinants of disease. We found that only four amino acids near the C terminus of the NS5 protein were primarily responsible for the development of neurological disease. Mutation of these four amino acids had no effect on viral replication or histopathological features, including inflammatory responses, in mice. These findings suggest a critical role for NS5 in stimulating neuronal dysfunction and degeneration following TBEV infection and provide new insights into the molecular mechanisms underlying the pathogenesis of tick-borne flaviviruses.
Importance:
Tick-borne encephalitis virus (TBEV) and Omsk hemorrhagic fever virus (OHFV) belong to the tick-borne encephalitis serocomplex, genus Flavivirus, family Flaviviridae. Although TBEV causes neurological disease in humans while OHFV causes a disease typically identified with hemorrhagic fever. In this study, we investigated the viral determinants responsible for the different disease phenotypes using reverse genetics technology. We identified a cluster of only four amino acids in nonstructural protein 5 primarily involved in the development of neurological disease in a mouse model. Moreover, the effect of these four amino acids was independent of viral replication property and did not affect the formation of virus-induced lesions in the brain directly. These data suggest that these amino acids may be involved in the induction of neuronal dysfunction and degeneration in virus-infected neurons, ultimately leading to the neurological disease phenotype. These findings provide new insight into the molecular mechanisms of tick-borne flavivirus pathogenesis.
Insights
Four amino acids in the NS5 protein of tick-borne encephalitis virus (TBEV) determine neurological disease, distinct from Omsk hemorrhagic fever virus (OHFV). This finding reveals key viral determinants of flavivirus pathogenesis.
Area of Science:
- Virology
- Molecular Biology
- Pathogenesis
Background:
- Tick-borne encephalitis virus (TBEV) and Omsk hemorrhagic fever virus (OHFV) are related tick-borne flaviviruses with distinct human disease outcomes: neurological vs. hemorrhagic.
- The specific viral factors driving these different disease phenotypes remain unidentified.
Purpose of the Study:
- To identify the viral determinants responsible for the distinct neurological and hemorrhagic disease phenotypes of TBEV and OHFV.
- To elucidate the molecular mechanisms underlying tick-borne flavivirus pathogenesis.
Main Methods:
- Generation of chimeric viruses using infectious clone technology.
- Pathological analysis of chimeric viruses in a mouse model.
- Reverse genetics to investigate viral determinants.
Main Results:
- A cluster of four amino acids near the C terminus of the NS5 protein was identified as primarily responsible for neurological disease development.
- These four amino acids did not affect viral replication or histopathological features, including brain lesions and inflammatory responses.
- The identified amino acids appear crucial for inducing neuronal dysfunction and degeneration.
Conclusions:
- The NS5 protein plays a critical role in TBEV-induced neurological disease.
- These specific amino acids are key determinants of neurovirulence in tick-borne flaviviruses.
- This research offers new insights into the pathogenesis of tick-borne flaviviruses.

