The F Gene of the Osaka-2 Strain of Measles Virus Derived from a Case of Subacute Sclerosing Panencephalitis Is a Major Determinant of Neurovirulence

Author:

Ayata Minoru1,Takeuchi Kaoru2,Takeda Makoto3,Ohgimoto Shinji1,Kato Seiichi1,Sharma Luna Bhatta1,Tanaka Miyuu4,Kuwamura Mitsuru4,Ishida Hiroshi15,Ogura Hisashi1

Affiliation:

1. Department of Virology, Osaka City University Medical School, Osaka 545-8585, Japan

2. Department of Infection Biology, Graduate School of Comprehensive Human Sciences and Institute of Basic Medical Sciences, University of Tsukuba, Ibaraki 305-8575, Japan

3. Department of Virology III, National Institute of Infectious Diseases, Tokyo 208-0011, Japan

4. Laboratory of Veterinary Pathology, Osaka Prefecture University, Osaka 598-8531, Japan

5. Department of Pediatrics, Izumi Municipal Hospital, Osaka 594-0071, Japan

Abstract

ABSTRACT Measles virus (MV) is the causative agent for acute measles and subacute sclerosing panencephalitis (SSPE). Although numerous mutations have been found in the MV genome of SSPE strains, the mutations responsible for the neurovirulence have not been determined. We previously reported that the SSPE Osaka-2 strain but not the wild-type strains of MV induced acute encephalopathy when they were inoculated intracerebrally into 3-week-old hamsters. The recombinant MV system was adapted for the current study to identify the gene(s) responsible for neurovirulence in our hamster model. Recombinant viruses that contained envelope-associated genes from the Osaka-2 strain were generated on the IC323 wild-type MV background. The recombinant virus containing the M gene alone did not induce neurological disease, whereas the H gene partially contributed to neurovirulence. In sharp contrast, the recombinant virus containing the F gene alone induced lethal encephalopathy. This phenotype was related to the ability of the F protein to induce syncytium formation in Vero cells. Further study indicated that a single T461I substitution in the F protein was sufficient to transform the nonneuropathogenic wild-type MV into a lethal virus for hamsters.

Publisher

American Society for Microbiology

Subject

Virology,Insect Science,Immunology,Microbiology

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