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PMID: 15498486 Published · ppublish English Journal Article Research Support, Non-U.S. Gov't

Sorting nexin-1 mediates tubular endosome-to-TGN transport through coincidence sensing of high- curvature membranes and 3-phosphoinositides.

Current biology : CB ·Vol. 14 ·No. 20 ·2004-10-26 ·Pages 1791-800

Carlton J, Bujny M, Peter BJ, Oorschot VM, Rutherford A, Mellor H, Klumperman J, McMahon HT, Cullen PJ

Abstract

Sorting nexins (SNXs) are phox homology (PX) domain-containing proteins thought to regulate endosomal sorting of internalized receptors. The prototypical SNX is sorting nexin-1 (SNX1), a protein that through its PX domain binds phosphatidylinositol 3-monophosphate [PtdIns(3)P] and phosphatidylinositol 3,5-bisphosphate [PtdIns(3,5)P(2)]. SNX1 is associated with early endosomes, from where it has been proposed to regulate the degradation of internalized epidermal growth factor (EGF) receptors through modulating endosomal-to-lysosomal sorting. We show here that SNX1 contains a BAR (Bin/Amphiphysin/Rvs) domain, a membrane binding domain that endows SNX1 with the ability to form dimers and to sense membrane curvature. We present evidence that through coincidence detection, the BAR and PX domains efficiently target SNX1 to a microdomain of the early endosome defined by high curvature and the presence of 3-phosphoinositides. In addition, we show that the BAR domain endows SNX1 with an ability to tubulate membranes in-vitro and drive the tubulation of the endosomal compartment in-vivo. Using RNA interference (RNAi), we establish that SNX1 does not play a role in EGF or transferrin receptor sorting; rather it specifically perturbs endosome-to-trans Golgi network (TGN) transport of the cation-independent mannose-6-phosphate receptor (CI-MPR). Our data support an evolutionarily conserved function for SNX1 from yeast to mammals and provide functional insight into the molecular mechanisms underlying lipid-mediated protein targeting and tubular-based protein sorting. We conclude that through coincidence detection SNX1 associates with a microdomain of the early endosome-characterized by high membrane curvature and the presence of 3-phosphoinositides-from where it regulates tubular-based endosome-to-TGN retrieval of the CI-MPR.

MeSH Terms
Biological Transport Carrier Proteins/metabolism Endosomes/metabolism Fluorescent Antibody Technique HeLa Cells Humans Intracellular Membranes/metabolism Microscopy, Electron Phosphatidylinositols/metabolism Protein Structure, Tertiary RNA Interference RNA, Small Interfering/genetics Receptor, IGF Type 2/metabolism Transfection Vesicular Transport Proteins/metabolism trans-Golgi Network/metabolism
Chemicals
Carrier Proteins Phosphatidylinositols RNA, Small Interfering Receptor, IGF Type 2 Vesicular Transport Proteins
Authors & Affiliations
9 authors, click to expand affiliations / ORCID
Carlton Jez
Henry Wellcome Integrated Signalling Laboratories, Department of Biochemistry, School of Medical Sciences, University of Bristol, Bristol BS8 1TD, United Kingdom.
Bujny Miriam
Peter Brian J
Oorschot Viola M J
Rutherford Anna
Mellor Harry
Klumperman Judith
McMahon Harvey T
Cullen Peter J
Article Info
Journal
Current biology : CB
Abbr.
Curr Biol
ISSN
0960-9822
Published
2004-10-26
Pages
1791-800
Language
English
Region
England
NLM ID
9107782
Subset
IM
Grants
Wellcome Trust · 076126 · United Kingdom
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