Thiazolides, a New Class of Antiviral Agents Effective against Rotavirus Infection, Target Viral Morphogenesis, Inhibiting Viroplasm Formation

Author:

La Frazia Simone1,Ciucci Alessandra1,Arnoldi Francesca2,Coira Maurizio1,Gianferretti Patrizia1,Angelini Mara1,Belardo Giuseppe1,Burrone Oscar R.3,Rossignol Jean-Francois4,Santoro M. Gabriella1

Affiliation:

1. Department of Biology, University of Rome Tor Vergata, Rome, Italy

2. Department of Medicine, Surgery and Health Sciences, University of Trieste, Trieste, Italy

3. International Centre for Genetic Engineering and Biotechnology, Trieste, Italy

4. Romark Laboratories, LC, Tampa, Florida, USA

Abstract

ABSTRACT Rotaviruses, nonenveloped viruses presenting a distinctive triple-layered particle architecture enclosing a segmented double-stranded RNA genome, exhibit a unique morphogenetic pathway requiring the formation of cytoplasmic inclusion bodies called viroplasms in a process involving the nonstructural viral proteins NSP5 and NSP2. In these structures the concerted packaging and replication of the 11 positive-polarity single-stranded RNAs take place to generate the viral double-stranded RNA (dsRNA) genomic segments. Rotavirus infection is a leading cause of gastroenteritis-associated severe morbidity and mortality in young children, but no effective antiviral therapy exists. Herein we investigate the antirotaviral activity of the thiazolide anti-infective nitazoxanide and reveal a novel mechanism by which thiazolides act against rotaviruses. Nitazoxanide and its active circulating metabolite, tizoxanide, inhibit simian A/SA11-G3P[2] and human Wa-G1P[8] rotavirus replication in different types of cells with 50% effective concentrations (EC 50 s) ranging from 0.3 to 2 μg/ml and 50% cytotoxic concentrations (CC 50 s) higher than 50 μg/ml. Thiazolides do not affect virus infectivity, binding, or entry into target cells and do not cause a general inhibition of viral protein expression, whereas they reduce the size and alter the architecture of viroplasms, decreasing rotavirus dsRNA formation. As revealed by protein/protein interaction analysis, confocal immunofluorescence microscopy, and viroplasm-like structure formation analysis, thiazolides act by hindering the interaction between the nonstructural proteins NSP5 and NSP2. Altogether the results indicate that thiazolides inhibit rotavirus replication by interfering with viral morphogenesis and may represent a novel class of antiviral drugs effective against rotavirus gastroenteritis.

Publisher

American Society for Microbiology

Subject

Virology,Insect Science,Immunology,Microbiology

Reference37 articles.

1. Structural insights into the coupling of virion assembly and rotavirus replication;Trask SD;Nat. Rev. Microbiol.,2012

2. EstesMKKapikianZA. 2007. Rotaviruses, p 1917–1974. In KnipeDMHowleyPMGriffinDELambRAMartinMARoizmanBStrausSE (ed), Fields virology, 5th ed, vol 2. Lippincott Williams & Wilkins, Philadelphia, PA.

3. Rotavirus infectious particles use lipid rafts during replication for transport to the cell surface in vitro and in vivo;Cuadras MA;Virology,2003

4. Rotavirus disease and its prevention;Widdowson MA;Curr. Opin. Gastroenterol.,2005

5. 2008 estimate of worldwide rotavirus-associated mortality in children younger than 5 years before the introduction of universal rotavirus vaccination programmes: a systematic review and meta-analysis;Tate JE;Lancet Infect. Dis.,2012

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