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Updated: Nov 6, 2025

Assays for the Specific Growth Rate and Cell-binding Ability of Rotavirus
Published on: January 28, 2019
Cell surface heat shock protein-mediated entry of tumor cell-adapted rotavirus into U-937 cells
José Rico1, Claudia Perez1, Juan Hernandez1
1Department of Physiological Sciences, Faculty of Medicine, Universidad Nacional de Colombia, Bogota, D.C, Colombia.
Abstract:
Rotaviruses infect cells by binding to specific cell surface molecules including gangliosides, heat shock protein cognate protein 70 (Hsc70), and some integrins. The characterization of cell surface receptors defining viral tropism is crucial for inhibiting entry into the normal cells or the cancer cells. In the present work, several tumor cell-adapted rotavirus isolates were tested for their interaction with some heat shock proteins (HSPs) present in the U-937 cells, derived from a human pleural effusion (histiocytic lymphoma monocyte). This interaction was examined by virus overlay protein-binding (VOPB), immunochemistry, immuno-dot blot assays, and flow cytometry. The results indicated that the rotavirus isolates studied were able to infect U937 cells by interacting with Hsp90, Hsp70, Hsp60, Hsp40, Hsc70, protein disulfide isomerase (PDI), and integrin β3, which are implicated in cellular proliferation, differentiation, and cancer development. Interestingly, these cellular proteins were found to be associated in lipid microdomains (rafts), facilitating in this way eventual sequential interactions of the rotavirus particles with the cell surface receptors. The rotavirus tropism for U937 cells through the use of these cell surface proteins made this rotavirus isolates an attractive target for the development of oncolytic strategies in the context of alternative and complementary treatment of cancer.
Insights
Rotaviruses infect cancer cells by interacting with heat shock proteins (HSPs) and integrins on U-937 cells. These interactions, occurring in lipid rafts, suggest rotaviruses as potential oncolytic agents for cancer therapy.
Area of Science:
- Virology
- Cell Biology
- Oncology
Background:
- Rotaviruses utilize cell surface molecules like gangliosides, Hsc70, and integrins for cellular entry.
- Understanding viral tropism is key for developing strategies to block viral entry into normal and cancer cells.
Purpose of the Study:
- To investigate the interaction of tumor-adapted rotavirus isolates with heat shock proteins (HSPs) in U-937 cells.
- To determine if these interactions involve specific cellular proteins implicated in cancer development.
Main Methods:
- Virus overlay protein-binding (VOPB) assay.
- Immunochemistry, immuno-dot blot assays, and flow cytometry.
- Analysis of rotavirus interaction with HSPs (Hsp90, Hsp70, Hsp60, Hsp40, Hsc70), protein disulfide isomerase (PDI), and integrin β3 in U-937 cells.
Main Results:
- Rotavirus isolates interacted with Hsp90, Hsp70, Hsp60, Hsp40, Hsc70, PDI, and integrin β3 in U-937 cells.
- These cellular proteins are involved in proliferation, differentiation, and cancer.
- The identified proteins were localized in lipid microdomains (rafts), facilitating rotavirus-receptor interactions.
Conclusions:
- Rotavirus tropism for U-937 cells involves interactions with specific HSPs and integrin β3 within lipid rafts.
- These findings highlight rotaviruses as promising candidates for oncolytic strategies in cancer treatment.
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