Search engine for discovering works of Art, research articles, and books related to Art and Culture
ShareThis
Javascript must be enabled to continue!

Analysis of ESCRT functions in exosome biogenesis, composition and secretion highlights the heterogeneity of extracellular vesicles

View through CrossRef
Exosomes are extracellular vesicles (EVs) secreted upon fusion of endosomal multivesicular bodies (MVBs) with the plasma membrane. The mechanisms involved in their biogenesis remain so far unclear although they constitute targets to modulate exosome formation and therefore are a promising tool to understand their functions. We have performed an RNA interference screen targeting twenty-three components of the endosomal sorting complex required for transport (ESCRT) machinery and associated proteins in MHC class II (MHC II)-expressing HeLa-CIITA cells. Silencing of HRS, STAM1, or TSG101 reduced the secretion of EV-associated CD63 and MHC II but each gene altered differently the size and/or protein composition of secreted EV, as quantified by immuno-electron microscopy. By contrast, depletion of VPS4B augmented this secretion while not altering the features of EVs. For several other ESCRT subunits, the screen did not allow to conclude on their involvement in exosome biogenesis. Interestingly, silencing of ALIX increased MHC II exosomal secretion, due to an overall increase in intracellular MHC II protein and mRNA levels. In human dendritic cells (DCs), ALIX depletion also increased MHC II in the cells, but not in the released CD63-positive EVs. Such differences could be attributed to a higher heterogeneity in size, and higher MHC II and lower CD63 contents in vesicles recovered from DCs as compared to HeLa-CIITA. The results reveal a role for selected ESCRT components and accessory proteins in exosome secretion and composition by HeLa-CIITA. They also highlight biogenetic differences in vesicles secreted by a tumour cell line and primary DCs.
Title: Analysis of ESCRT functions in exosome biogenesis, composition and secretion highlights the heterogeneity of extracellular vesicles
Description:
Exosomes are extracellular vesicles (EVs) secreted upon fusion of endosomal multivesicular bodies (MVBs) with the plasma membrane.
The mechanisms involved in their biogenesis remain so far unclear although they constitute targets to modulate exosome formation and therefore are a promising tool to understand their functions.
We have performed an RNA interference screen targeting twenty-three components of the endosomal sorting complex required for transport (ESCRT) machinery and associated proteins in MHC class II (MHC II)-expressing HeLa-CIITA cells.
Silencing of HRS, STAM1, or TSG101 reduced the secretion of EV-associated CD63 and MHC II but each gene altered differently the size and/or protein composition of secreted EV, as quantified by immuno-electron microscopy.
By contrast, depletion of VPS4B augmented this secretion while not altering the features of EVs.
For several other ESCRT subunits, the screen did not allow to conclude on their involvement in exosome biogenesis.
Interestingly, silencing of ALIX increased MHC II exosomal secretion, due to an overall increase in intracellular MHC II protein and mRNA levels.
In human dendritic cells (DCs), ALIX depletion also increased MHC II in the cells, but not in the released CD63-positive EVs.
Such differences could be attributed to a higher heterogeneity in size, and higher MHC II and lower CD63 contents in vesicles recovered from DCs as compared to HeLa-CIITA.
The results reveal a role for selected ESCRT components and accessory proteins in exosome secretion and composition by HeLa-CIITA.
They also highlight biogenetic differences in vesicles secreted by a tumour cell line and primary DCs.

Related Results

Spatial control of neuronal membrane traffic and mitotic abscission by Septin 9
Spatial control of neuronal membrane traffic and mitotic abscission by Septin 9
Cell asymmetries drive cell function. Polarized cells such as neurons and epithelia require membrane protein compartmentalization, while fundamental cell processes such as cell div...
Loss of CHMP2A implicates an ordered assembly of ESCRT-III proteins during cytokinetic abscission
Loss of CHMP2A implicates an ordered assembly of ESCRT-III proteins during cytokinetic abscission
ABSTRACT The ESCRT machinery mediates membrane remodeling in fundamental cellular processes including cytokinesis, endosomal sorting, nuclear envelope reformation, ...
ESCRT-III on endosomes: new functions, new activation pathway
ESCRT-III on endosomes: new functions, new activation pathway
The multivesicular body (MVB) pathway sorts ubiquitinated membrane cargo to intraluminal vesicles (ILVs) within the endosome, en route to the lysosomal lumen. The pathway involves ...
ESCRT machinery plays a role in microautophagy in yeast
ESCRT machinery plays a role in microautophagy in yeast
Abstract Background Microautophagy, which degrades cargos by direct lysosomal/vacuolar engulfment of cytoplasmic cargos, ...
ESCRT machinery plays a role in microautophagy in yeast
ESCRT machinery plays a role in microautophagy in yeast
Abstract Background: Microautophagy, which degrades cargos by direct lysosomal/vacuolar engulfment of cytoplasmic cargos, is promoted after nutrient starvation and the inac...
ESCRT machinery plays a role in microautophagy in yeast
ESCRT machinery plays a role in microautophagy in yeast
Abstract Background: Microautophagy, which degrades cargos by direct lysosomal/vacuolar engulfment of cytoplasmic cargos, is promoted after nutrient starvation and the inac...
ESCRT machinery plays a role in microautophagy in yeast
ESCRT machinery plays a role in microautophagy in yeast
Abstract Background: Microautophagy, which degrades cargos by direct lysosomal/vacuolar engulfment of cytoplasmic cargos, is promoted after nutrient starvation and the inac...

Back to Top