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.

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.