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ATPase-defective mammalian VPS4 localizes to aberrant endosomes and impairs cholesterol trafficking
1School of Biological Sciences, University of Manchester, Manchester M13 9PT, United Kingdom.
Abstract:
The yeast vacuolar sorting protein Vps4p is an ATPase required for endosomal trafficking that couples membrane association to its ATPase cycle. To investigate the function of mammalian VPS4 in endosomal trafficking, we have transiently expressed wild-type or ATPase-defective human VPS4 (hVPS4) in cultured cells. Wild-type hVPS4 was cytosolic, whereas a substantial fraction of hVPS4 that was unable to either bind or hydrolyze ATP was localized to membranes, including those of specifically induced vacuoles. Vacuoles were exclusively endocytic in origin, and subsets of enlarged vacuoles stained with markers for each stage of the endocytic pathway. Sorting of receptors from the early endosome to the recycling compartment or to the trans-Golgi network was not significantly affected, and no mutant hVPS4 associated with these compartments. However, many hVPS4-induced vacuoles were substantially enriched in cholesterol relative to the endosomal compartments of untransfected cells, indicating that expression of mutant hVPS4 gives rise to a kinetic block in postendosomal cholesterol sorting. The phenotype described here is largely consistent with the defects in vacuolar sorting associated with class E vps mutants in yeast, and a role for mammalian VPS4 is discussed in this context.
Insights
Mutant human VPS4 (hVPS4) protein, unable to bind ATP, causes cholesterol accumulation in endosomes. This suggests a role for VPS4 in regulating cholesterol sorting within the endosomal pathway.
Area of Science:
- Cell Biology
- Molecular Biology
- Biochemistry
Background:
- Vps4p is a yeast ATPase essential for endosomal trafficking.
- VPS4 couples membrane association to its ATPase cycle during trafficking.
- Understanding mammalian VPS4 function is crucial for endosomal pathway research.
Purpose of the Study:
- To investigate the function of mammalian VPS4 in endosomal trafficking.
- To determine the localization and effects of wild-type and ATPase-defective human VPS4 (hVPS4) in cultured cells.
Main Methods:
- Transient expression of wild-type and ATPase-defective hVPS4 in cultured cells.
- Cellular localization studies using microscopy and specific markers.
- Analysis of endosomal compartments and cholesterol enrichment.
Main Results:
- ATPase-defective hVPS4 localized to membranes and induced vacuoles.
- Induced vacuoles were of endocytic origin and showed defects in cholesterol sorting.
- No significant effect on early endosome to recycling compartment or TGN sorting was observed.
Conclusions:
- Expression of mutant hVPS4 causes a kinetic block in postendosomal cholesterol sorting.
- Mammalian VPS4 plays a role in regulating cholesterol transport within the endosomal system.
- The observed phenotype is consistent with yeast Vps4p function in vacuolar sorting.