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Mutant Chinese hamster ovary cells pleiotropically defective in receptor-mediated endocytosis

Insights

Mutant cells lacking mannose 6-phosphate receptor function resist diphtheria toxin but require acidic pH for normal Sindbis virus production. This suggests a defect in delivering molecules to acidic cellular compartments.

Area of Science:

  • Cell Biology
  • Molecular Biology
  • Virology

Background:

  • Lysosomal hydrolase uptake is mediated by the mannose 6-phosphate receptor.
  • Diphtheria toxin and viruses like Sindbis utilize cellular pathways for entry and function.

Purpose of the Study:

  • To investigate the role of the mannose 6-phosphate receptor pathway in cellular resistance to diphtheria toxin and viral infection.
  • To characterize a mutant Chinese hamster ovary cell line with defects in lysosomal hydrolase uptake.

Main Methods:

  • Selection of diphtheria toxin-resistant mutants.
  • Analysis of Sindbis virus binding, internalization, and production.
  • Assessment of mannose 6-phosphate receptor activity and localization.
  • pH-shift experiments to evaluate cellular responses.

Main Results:

  • A mutant (DTF 1-5-1) deficient in mannose 6-phosphate receptor-mediated uptake showed resistance to diphtheria toxin.
  • This mutant exhibited altered Sindbis virus production, which was restored by acidic pH exposure.
  • Mannose 6-phosphate receptor activity was reduced at the cell surface and overall, leading to increased hydrolase secretion.
  • The mutant's phenotype mimicked ammonia-treated cells, indicating impaired delivery to acidic compartments.

Conclusions:

  • The DTF 1-5-1 mutant has a defect in delivering viruses, diphtheria toxin, and lysosomal hydrolases to an acidic cellular compartment.
  • This defect impacts multiple cellular processes but does not affect the uptake of all ligands, suggesting alternative endocytic pathways.

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