Novel Receptor Specificity of Avian Gammacoronaviruses That Cause Enteritis

I N Ambepitiya Wickramasinghe1, R P de Vries2, E A W S Weerts1

  • 1Department of Pathobiology, Faculty of Veterinary Medicine, Utrecht University, Utrecht, The Netherlands.

Journal of Virology
|June 12, 2015
PubMed
Abstract

Insights

Enteric avian gammacoronaviruses, like turkey coronavirus (TCoV), bind to novel nonsialylated glycan receptors in the intestines. This specificity explains their enterotropism, differing from respiratory viruses like infectious bronchitis virus (IBV).

Area of Science:

  • Virology
  • Glycobiology
  • Immunology

Background:

  • Avian gammacoronaviruses cause significant economic losses in the poultry industry.
  • Respiratory pathogens like infectious bronchitis virus (IBV) utilize sialylated glycans, while enteric strains remain poorly understood.
  • Enteric coronaviruses in turkeys, guineafowl, and quail are major causes of disease, necessitating research into their tropism.

Purpose of the Study:

  • To investigate the receptor-binding determinants of enterotropic avian gammacoronaviruses.
  • To understand the molecular basis for the intestinal tropism of turkey coronavirus (TCoV), guineafowl coronavirus (GfCoV), and quail coronavirus (QCoV).
  • To identify novel glycan receptors exploited by enteric avian coronaviruses.

Main Methods:

  • Recombinant spike (S1) proteins of TCoV, GfCoV, and QCoV were expressed.
  • Tissue binding specificity was profiled using protein histochemistry on host tissues.
  • Glycan array analyses identified specific glycan structures recognized by the S1 proteins.
  • Lectin histochemistry confirmed glycan expression patterns in intestinal tissues.

Main Results:

  • TCoV, GfCoV, and QCoV S1 proteins specifically bound to intestinal tissues of their respective avian hosts.
  • Unlike IBV, enteric gammacoronavirus S1 proteins recognized nonsialylated type 2 poly-N-acetyl-lactosamines.
  • Complex N-glycans were found to be highly expressed in the intestinal tract of various avian species.

Conclusions:

  • Enteric avian gammacoronaviruses utilize a novel class of nonsialylated glycan receptors for host cell attachment.
  • The high specificity of viral spike proteins for these intestinal glycans correlates with enterotropism.
  • Understanding these novel receptors is crucial for developing targeted vaccines and control strategies against enteric avian coronaviruses.

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