A comparison of DNA vaccines for the rabies-related virus, Mokola

L H Nel1, M Niezgoda, C A Hanlon

  • 1Centers for Disease Control and Prevention, Rabies Section MS-G33, 1600 Clifton road NE, Atlanta, GA 30333, USA. lhnel@postino.up.ac.za

Vaccine
|May 15, 2003
PubMed

Insights

Developing DNA vaccines against Mokola virus, a rabies relative, showed partial protection in mice. Some vaccines expressing the glycoprotein gene offered protection, but a single dose was insufficient. Booster doses increased antibody titers.

Area of Science:

  • Virology
  • Immunology
  • Vaccine Development

Background:

  • Mokola virus, a rabies-related virus endemic to Africa, is highly pathogenic and causes encephalitis.
  • Recent unexplained increases in Mokola virus isolations in South Africa warrant further investigation.
  • Zoonotic events involving Mokola virus have been documented, highlighting public health concerns.

Purpose of the Study:

  • To develop and evaluate DNA vaccines for immunization against Mokola virus.
  • To compare the efficacy of different DNA vaccine constructs utilizing various promoters and backbones.
  • To assess the potential for co-expression of Mokola virus G and N genes in vaccine efficacy.

Main Methods:

  • Cloning and sequencing of Mokola virus glycoprotein (G) and nucleoprotein (N) genes from a South African isolate.
  • Construction and testing of four distinct DNA vaccine candidates with varying promoters and DNA backbones.
  • Evaluation of vaccine efficacy in laboratory mice through lethal challenge studies and serological assays for virus-neutralizing antibodies.

Main Results:

  • Two single G-expressing DNA vaccines (pSG5-mokG and pCI-neo-mokG) conferred partial protection against lethal Mokola virus challenge in mice.
  • Neither vaccine provided full protection after a single immunization; booster doses increased virus-neutralizing antibody titers.
  • A third construct (pBudCE4-mokG) showed reduced efficacy, and co-expression of G and N genes did not improve protection.
  • Prime-boost strategies did not induce cross-protective immunity against rabies or Mokola viruses.

Conclusions:

  • DNA vaccines expressing Mokola virus glycoprotein can induce partial protection and virus-neutralizing antibodies in mice.
  • Optimizing DNA vaccine constructs, including promoter choice and backbone, is crucial for efficacy.
  • Further research is needed to achieve full protection and explore cross-protective immunity against related rhabdoviruses.