Related Experiment Videos
Mutant Chinese hamster ovary cells pleiotropically defective in receptor-mediated endocytosis
Abstract:
Populations of Chinese hamster ovary cells selected for resistance to diphtheria toxin were found to be highly enriched for mutants deficient in the uptake of lysosomal hydrolases via the mannose 6-phosphate receptor. One doubly defective mutant, DTF 1-5-1, exhibited increased resistance to Sindbis virus, although it was able to bind and internalize virus normally. Normal production of virus was obtained when, subsequent to virus binding, the mutant was exposed for 2 min to acidic pH. Similarly, a shift to acidic pH increased the sensitivity of DTF 1-5-1 to diphtheria toxin 12-fold. Decreased uptake of lysosomal hydrolases by the mutant correlated with decreased mannose 6-phosphate receptor activity at the cell surface; results of lactoperoxidase-catalyzed iodination indicated that the surface-associated receptor was present but inactive on DTF 1-5-1. Total mannose 6-phosphate receptor activity was also decreased in the mutant and this decrease was reflected by increased secretion of lysosomal hydrolases. The phenotype of DTF 1-5-1 resembles in many ways that of cells treated with ammonia. We suggest that the defect in DTF 1-5-1 stems from an inability to deliver virus, diphtheria toxin, and lysosomal hydrolases to an acidic compartment. Other ligands may be endocytosed through a different pathway since the defect of DTF 1-5-1 did not decrease the endocytosis of ricin, modeccin, or Pseudomonas toxin and had minimal effects on uptake and degradation of low density lipoprotein.
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.