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Assays for the Specific Growth Rate and Cell-binding Ability of Rotavirus
Published on: January 28, 2019
Different rotavirus strains enter MA104 cells through different endocytic pathways: the role of clathrin-mediated
Michelle Gutiérrez1, Pavel Isa, Claudia Sánchez-San Martin
1Departamento de Genética del Desarrollo y Fisiología Molecular, Instituto de Biotecnología, UNAM, Avenida Universidad 2001, Col. Chamilpa, Cuernavaca, Morelos 62210, México.
Abstract:
Rotaviruses, the single most important agents of acute severe gastroenteritis in children, are nonenveloped viruses formed by a three-layered capsid that encloses a genome formed by 11 segments of double-stranded RNA. The mechanism of entry of these viruses into the host cell is not well understood. The best-studied strain, RRV, which is sensitive to neuraminidase (NA) treatment of the cells, uses integrins alpha2 beta1 and alphav beta3 and the heat shock protein hsc70 as receptors and enters MA104 cells through a non-clathrin-, non-caveolin-mediated pathway that depends on a functional dynamin and on the presence of cholesterol on the cell surface. In this work, using a combination of pharmacological, biochemical, and genetic approaches, we compared the entry characteristics of four rotavirus strains known to have different receptor requirements. We chose four rotavirus strains that represent all phenotypic combinations of NA resistance or sensitivity and integrin dependence or independence. We found that even though all the strains share their requirements for hsc70, dynamin, and cholesterol, three of them differ from the simian strain RRV in the endocytic pathway used. The human strain Wa, porcine strain TFR-41, and bovine strain UK seem to enter the cell through clathrin-mediated endocytosis, since treatments that inhibit this pathway block their infectivity; consistent with this entry route, these strains were sensitive to changes in the endosomal pH. The inhibition of other endocytic mechanisms, such as macropinocytosis or caveola-mediated uptake, had no effect on the internalization of the rotavirus strains tested here.
Insights
Different rotavirus strains utilize distinct cellular entry pathways, with most human, porcine, and bovine strains entering via clathrin-mediated endocytosis, unlike the RRV strain.
Area of Science:
- Virology
- Cell Biology
Background:
- Rotaviruses cause severe gastroenteritis in children.
- Viral entry mechanisms are crucial for infection but not fully understood for rotaviruses.
- The RRV strain enters cells via a non-clathrin, non-caveolin pathway dependent on specific receptors and cellular factors.
Purpose of the Study:
- To compare the host cell entry mechanisms of four rotavirus strains with varying receptor requirements.
- To elucidate the endocytic pathways utilized by different rotavirus strains.
Main Methods:
- Utilized pharmacological, biochemical, and genetic approaches.
- Investigated four rotavirus strains with diverse neuraminidase (NA) sensitivity and integrin dependence.
- Assessed the impact of inhibiting various endocytic pathways on viral infectivity.
Main Results:
- All tested rotavirus strains require heat shock protein hsc70, dynamin, and cholesterol for entry.
- Three strains (human Wa, porcine TFR-41, bovine UK) utilize clathrin-mediated endocytosis.
- These three strains are sensitive to endosomal pH changes, consistent with clathrin-mediated entry.
- The RRV strain employs a different, non-clathrin/non-caveolin pathway.
Conclusions:
- Rotavirus entry mechanisms are strain-dependent, with clathrin-mediated endocytosis being common for human, porcine, and bovine strains.
- Understanding these diverse entry pathways is vital for developing targeted antiviral strategies.
- The conserved requirement for hsc70, dynamin, and cholesterol highlights key host factors in rotavirus infection.
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