A single mutation in Chinese hamster ovary cells impairs both Golgi and endosomal functions

Insights

A Chinese hamster ovary cell mutant shows defects in endocytosis and viral release due to a single genetic mutation. This suggests a shared ion transport mechanism links endocytic and secretory pathways.

Area of Science:

  • Cell Biology
  • Molecular Biology
  • Virology

Background:

  • Receptor-mediated endocytosis is crucial for cellular uptake of various molecules.
  • Viral entry and release are complex processes involving host cell machinery.
  • Defects in endocytosis can impact cellular functions and viral pathogenesis.

Purpose of the Study:

  • To investigate the genetic basis of pleiotropic defects in endocytosis and viral maturation.
  • To identify common cellular mechanisms underlying endocytosis and viral replication.
  • To characterize a Chinese hamster ovary cell mutant with defects in endocytosis.

Main Methods:

  • Selection and characterization of a Chinese hamster ovary cell mutant (DTG 1-5-4) with pleiotropic defects.
  • Assays for receptor-mediated endocytosis, toxin resistance, and viral infection (Sindbis virus, vesicular stomatitis virus).
  • Biochemical analysis of viral glycoprotein maturation and endosome acidification.
  • Electron microscopy to examine viral-infected cells.

Main Results:

  • Mutant DTG 1-5-4 displayed resistance to toxins and viruses, with decreased mannose 6-phosphate receptor-mediated uptake.
  • Endosomes from DTG 1-5-4 were deficient in ATP-dependent acidification.
  • Endocytosis and acidification were restored in revertants and hybrids.
  • Sindbis virus infection showed blocks in both viral penetration and release in the mutant.
  • Defects in Golgi-associated steps of Sindbis glycoprotein maturation (proteolytic processing, galactosylation, cell surface transport) were observed.
  • Accumulation of nucleocapsids near the Golgi apparatus was noted in infected mutant cells.

Conclusions:

  • A single genetic lesion in DTG 1-5-4 affects both receptor-mediated endocytosis and Golgi-associated viral maturation.
  • These pleiotropic defects suggest a common biochemical mechanism, likely involving ion transport, shared by endocytic and secretory pathways.
  • The findings provide insights into the interconnectedness of cellular trafficking and viral replication.