The ubiquitous dermokine delta activates Rab5 function in the early endocytic pathway.

The expression of the recently identified dermokine (Dmkn) gene leads to four families of proteins with as yet unknown functions. The secreted α, β and γ isoforms share an epidermis-restricted expression pattern, whereas the δ isoform is intracellular and ubiquitous. To get an insight into Dmknδ fun...

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Main Authors: Emilie A Leclerc, Leila Gazeilles, Guy Serre, Marina Guerrin, Nathalie Jonca
Format: Article
Language:English
Published: Public Library of Science (PLoS) 2011-01-01
Series:PLoS ONE
Online Access:http://europepmc.org/articles/PMC3053396?pdf=render
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spelling doaj-c4a07a1406af404aa987fd57b1beb7502020-11-25T02:03:31ZengPublic Library of Science (PLoS)PLoS ONE1932-62032011-01-0163e1781610.1371/journal.pone.0017816The ubiquitous dermokine delta activates Rab5 function in the early endocytic pathway.Emilie A LeclercLeila GazeillesGuy SerreMarina GuerrinNathalie JoncaThe expression of the recently identified dermokine (Dmkn) gene leads to four families of proteins with as yet unknown functions. The secreted α, β and γ isoforms share an epidermis-restricted expression pattern, whereas the δ isoform is intracellular and ubiquitous. To get an insight into Dmknδ function, we performed yeast two-hybrid screening and identified the small GTPases Rab5 as partners for Dmknδ. The Rab5 proteins are known to regulate membrane docking and fusion in the early endocytic pathway. GST pull-down assays confirmed the direct interaction between Rab5 and Dmknδ. Transient expression of Dmknδ in HeLa cells led to the formation of punctate structures colocalized with endogenous Rab5 and clathrin, indicating Dmknδ involvement in the early steps of endocytosis. Dmknδ indeed colocalized with transferrin at early stages of endocytosis, but did not modulate its endocytosis or recycling kinetics. We also showed that Dmknδ was able to bind both inactive (GDP-bound) and active (GTP-bound) forms of Rab5 in vitro but preferentially targeted GDP-bound form in HeLa cells. Interestingly, Dmknδ expression rescued the Rab5S34N-mediated inhibition of endosome fusion. Moreover, Dmknδ caused the enlargement of vesicles positive for Rab5 by promoting GTP loading onto the small GTPase. Together our data reveal that Dmknδ activates Rab5 function and thus is involved in the early endosomal trafficking.http://europepmc.org/articles/PMC3053396?pdf=render
collection DOAJ
language English
format Article
sources DOAJ
author Emilie A Leclerc
Leila Gazeilles
Guy Serre
Marina Guerrin
Nathalie Jonca
spellingShingle Emilie A Leclerc
Leila Gazeilles
Guy Serre
Marina Guerrin
Nathalie Jonca
The ubiquitous dermokine delta activates Rab5 function in the early endocytic pathway.
PLoS ONE
author_facet Emilie A Leclerc
Leila Gazeilles
Guy Serre
Marina Guerrin
Nathalie Jonca
author_sort Emilie A Leclerc
title The ubiquitous dermokine delta activates Rab5 function in the early endocytic pathway.
title_short The ubiquitous dermokine delta activates Rab5 function in the early endocytic pathway.
title_full The ubiquitous dermokine delta activates Rab5 function in the early endocytic pathway.
title_fullStr The ubiquitous dermokine delta activates Rab5 function in the early endocytic pathway.
title_full_unstemmed The ubiquitous dermokine delta activates Rab5 function in the early endocytic pathway.
title_sort ubiquitous dermokine delta activates rab5 function in the early endocytic pathway.
publisher Public Library of Science (PLoS)
series PLoS ONE
issn 1932-6203
publishDate 2011-01-01
description The expression of the recently identified dermokine (Dmkn) gene leads to four families of proteins with as yet unknown functions. The secreted α, β and γ isoforms share an epidermis-restricted expression pattern, whereas the δ isoform is intracellular and ubiquitous. To get an insight into Dmknδ function, we performed yeast two-hybrid screening and identified the small GTPases Rab5 as partners for Dmknδ. The Rab5 proteins are known to regulate membrane docking and fusion in the early endocytic pathway. GST pull-down assays confirmed the direct interaction between Rab5 and Dmknδ. Transient expression of Dmknδ in HeLa cells led to the formation of punctate structures colocalized with endogenous Rab5 and clathrin, indicating Dmknδ involvement in the early steps of endocytosis. Dmknδ indeed colocalized with transferrin at early stages of endocytosis, but did not modulate its endocytosis or recycling kinetics. We also showed that Dmknδ was able to bind both inactive (GDP-bound) and active (GTP-bound) forms of Rab5 in vitro but preferentially targeted GDP-bound form in HeLa cells. Interestingly, Dmknδ expression rescued the Rab5S34N-mediated inhibition of endosome fusion. Moreover, Dmknδ caused the enlargement of vesicles positive for Rab5 by promoting GTP loading onto the small GTPase. Together our data reveal that Dmknδ activates Rab5 function and thus is involved in the early endosomal trafficking.
url http://europepmc.org/articles/PMC3053396?pdf=render
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