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Diversity of Raft-Like Domains in Late Endosomes
Author(s) -
Komla Sobo,
Julien Chevallier,
Robert G. Parton,
Jean Grüenberg,
Gijs R. van den Brink
Publication year - 2007
Publication title -
plos one
Language(s) - English
Resource type - Journals
SCImago Journal Rank - 0.99
H-Index - 332
ISSN - 1932-6203
DOI - 10.1371/journal.pone.0000391
Subject(s) - endosome , vesicle , endocytic cycle , microbiology and biotechnology , organelle , biology , lipid raft , vesicular transport proteins , raft , lipid microdomain , membrane , endocytosis , intracellular , chemistry , cell , biochemistry , signal transduction , vacuolar protein sorting , organic chemistry , polymer , copolymer
Background Late endosomes, the last sorting station in the endocytic pathway before lysosomes, are pleiomorphic organelles composed of tubular elements as well as vesicular regions with a characteristic multivesicular appearance, which play a crucial role in intracellular trafficking. Here, we have investigated whether, in addition to these morphologically distinguishable regions, late endosomal membranes are additionally sub-compartmentalized into membrane microdomains. Methodology/Principal Findings Using sub-organellar fractionation techniques, both with and without detergents, combined with electron microscopy, we found that both the limiting membrane of the organel and the intraluminal vesicles contain raft-type membrane domains. Interestingly, these differentially localized domains vary in protein composition and physico-chemical properties. Conclusions/Significance In addition to the multivesicular organization, we find that late endosomes contain cholesterol rich microdomains both on their limiting membrane and their intraluminal vesicles that differ in composition and properties. Implications of these findings for late endosomal functions are discussed.

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