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  3. Pseudovacuoles--immobilized by high-pressure freezing--are associated with blebbing in walker carcinosarcoma cells

Pseudovacuoles--immobilized by high-pressure freezing--are associated with blebbing in walker carcinosarcoma cells

Details
Publisher DOI
10.1111/j.1365-2818.2008.01982.x
PubMed ID
18445155
Abstract
By applying high pressure freezing and freeze-substitution, we observed large inclusions of homogeneous appearance in the front of locomoting Walker carcinosarcoma cells that have not been described earlier. Live cell imaging revealed that these inclusions were poor in lipids and nucleic acids but had a high lysine (and hence protein) content. Usually one such structure 2-5 mum in size was present at the front of motile Walker cells, predominantly in the immediate vicinity of newly forming blebs. By correlating the lysine-rich areas in fixed and embedded cells with electron microscopic pictures, inclusions could be assigned to confined, faintly stained cytoplasmic areas that lacked a surrounding membrane; they were therefore called pseudovacuoles. After high-pressure freezing and freeze substitution, pseudovacuoles appeared to be filled with 20 nm large electron-transparent patches surrounded by 12 and 15 nm large particles. The heat shock protein Hsp90 was identified by peptide sequencing as a major fluorescent band on SDS-PAGE of lysine-labelled Walker cell extracts. By immunofluorescence, Hsp90 was found to be enriched in pseudovacuoles. Colocalization of the lysine with a potassium-specific dye in living cells revealed that pseudovacuoles act as K+ stores in the vicinity of forming blebs. We propose that pseudovacuoles might support blebbing by locally regulating the intracellular hydrostatic pressure.
Date Issued
2008
Publication Type
Article
Language(s)
en
Author(s)
Vanhecke, Dimitri  
Institut für Anatomie  
Bellmann, R
Baum, Oliver  
Institut für Anatomie  
Graber, Werner Adrian  
Institut für Anatomie  
Eggli, P
Keller, H
Studer, Daniel Franz  
Institut für Anatomie  
Additional Credits
Institut für Anatomie  
Journal
Journal of microscopy
Publisher
Wiley-Blackwell
ISSN
0022-2720
ISBN
18445155
Access(Rights)
metadata.only
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