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Published on: September 27, 2015
A single mutation in Chinese hamster ovary cells impairs both Golgi and endosomal functions
Abstract:
A Chinese hamster ovary cell mutant DTG 1-5-4, was selected for pleiotropic defects in receptor-mediated endocytosis by methods previously described (Robbins, A. R., S. S. Peng, and J. L. Marshall, 1983, J. Cell Biol., 96:1064-1071). DTG 1-5-4 exhibited increased resistance to modeccin, Pseudomonas toxin, diphtheria toxin, Sindbis virus, and vesicular stomatitis virus, as well as decreased uptake via the mannose 6-phosphate receptor. Fluorescein-dextran-labeled endosomes isolated from DTG 1-5-4 were deficient in ATP-dependent acidification in vitro. Endocytosis and endosome acidification were both restored in revertants of DTG 1-5-4 and in hybrids of DTG 1-5-4 with DTF 1-5-1, another endocytosis mutant exhibiting decreased ATP-dependent endosome acidification. Both DTG 1-5-4 and DTF 1-5-1 were blocked at two stages of infection with Sindbis virus: at low multiplicities of infecting virus, resistance reflected a block in viral penetration into the cytoplasm, but at higher multiplicities of infection the block was in virus release. Like endocytosis, release of Sindbis virus was increased in revertants of DTG 1-5-4 and in DTG 1-5-4 X DTF 1-5-1 hybrids. Decreased release of virus from DTG 1-5-4 correlated with defects in some of the Golgi apparatus-associated steps of Sindbis glycoprotein maturation: proteolytic processing of the precursor pE2, galactosylation, and transport to the cell surface all were inhibited. In contrast, mannosylation, fucosylation, and acylation of the Sindbis glycoproteins, and galactosylation of vesicular stomatitis virus and cellular glycoproteins occurred to similar respective extents in mutant and parent. Electron microscopic examination of Sindbis-infected DTG 1-5-4 showed a remarkable accumulation of nucleocapsids bound to cisternae adjacent to the Golgi apparatus; virions were observed in the lumina of some of these cisternae. That the alterations in both endocytosis and Golgi-associated steps of viral maturation result from a single genetic lesion indicates that these processes are dependent on a common biochemical mechanism. We suggest that endocytic and secretory pathways may share a common component involved in ion transport.
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.

