Literature DB >> 17148574

A loss-of-function screen reveals SNX5 and SNX6 as potential components of the mammalian retromer.

Thomas Wassmer1, Naomi Attar, Miriam V Bujny, Jacqueline Oakley, Colin J Traer, Peter J Cullen.   

Abstract

The mammalian retromer is a multimeric protein complex involved in mediating endosome-to-trans-Golgi-network retrograde transport of the cation-independent mannose-6-phosphate receptor. The retromer is composed of two subcomplexes, one containing SNX1 and forming a membrane-bound coat, the other comprising VPS26, VPS29 and VPS35 and being cargo-selective. In yeast, an additional sorting nexin--Vps17p--is a component of the membrane bound coat. It remains unclear whether the mammalian retromer requires a functional equivalent of Vps17p. Here, we have used an RNAi loss-of-function screen to examine whether any of the other 30 mammalian sorting nexins are required for retromer-mediated endosome-to-trans-Golgi-network retrieval of the cation-independent mannose-6-phosphate receptor. Using this screen, we identified two proteins, SNX5 and SNX6, that, when suppressed, induced a phenotype similar to that observed upon suppression of known retromer components. Whereas SNX5 and SNX6 colocalised with SNX1 on early endosomes, in immunoprecipitation experiments only SNX6 appeared to exist in a complex with SNX1. Interestingly, suppression of SNX5 and/or SNX6 resulted in a significant loss of SNX1, an effect that seemed to result from post-translational regulation of the SNX1 level. Such data suggest that SNX1 and SNX6 exist in a stable, endosomally associated complex that is required for retromer-mediated retrieval of the cation-independent mannose-6-phosphate receptor. SNX5 and SNX6 may therefore constitute functional equivalents of Vps17p in mammals.

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Year:  2006        PMID: 17148574     DOI: 10.1242/jcs.03302

Source DB:  PubMed          Journal:  J Cell Sci        ISSN: 0021-9533            Impact factor:   5.285


  110 in total

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Review 2.  Cargo trafficking in Alzheimer’s disease: the possible role of retromer.

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Authors:  Anja W Fjorback; Matthew Seaman; Camilla Gustafsen; Arnela Mehmedbasic; Suzanne Gokool; Chengbiao Wu; Daniel Militz; Vanessa Schmidt; Peder Madsen; Jens R Nyengaard; Thomas E Willnow; Erik Ilsø Christensen; William B Mobley; Anders Nykjær; Olav M Andersen
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4.  Rabankyrin-5 interacts with EHD1 and Vps26 to regulate endocytic trafficking and retromer function.

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Journal:  Traffic       Date:  2012-02-20       Impact factor: 6.215

5.  The organelle proteome of the DT40 lymphocyte cell line.

Authors:  Stephanie L Hall; Svenja Hester; Julian L Griffin; Kathryn S Lilley; Antony P Jackson
Journal:  Mol Cell Proteomics       Date:  2009-01-30       Impact factor: 5.911

6.  Clathrin is not required for SNX-BAR-retromer-mediated carrier formation.

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Journal:  J Cell Sci       Date:  2012-09-26       Impact factor: 5.285

Review 7.  Retromer.

Authors:  Juan S Bonifacino; James H Hurley
Journal:  Curr Opin Cell Biol       Date:  2008-05-09       Impact factor: 8.382

8.  Sorting nexin 1 loss results in increased oxidative stress and hypertension.

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Journal:  FASEB J       Date:  2020-04-15       Impact factor: 5.191

9.  A Critical Role for Sorting Nexin 1 in the Trafficking of Metabotropic Glutamate Receptors.

Authors:  Rohan Sharma; Ravinder Gulia; Samarjit Bhattacharyya
Journal:  J Neurosci       Date:  2018-08-24       Impact factor: 6.167

10.  PtdIns(4)P regulates retromer-motor interaction to facilitate dynein-cargo dissociation at the trans-Golgi network.

Authors:  Yang Niu; Cheng Zhang; Zhe Sun; Zhi Hong; Ke Li; Demeng Sun; Yanrui Yang; Changlin Tian; Weimin Gong; Jia-Jia Liu
Journal:  Nat Cell Biol       Date:  2013-03-24       Impact factor: 28.824

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