Literature DB >> 17319896

Apical sorting by galectin-3-dependent glycoprotein clustering.

Delphine Delacour1, Christoph Greb, Annett Koch, Emma Salomonsson, Hakon Leffler, Andre Le Bivic, Ralf Jacob.   

Abstract

Epithelial cells are characterized by their polarized organization based on an apical membrane that is separated from the basolateral membrane domain by tight junctions. Maintenance of this morphology is guaranteed by highly specific sorting machinery that separates lipids and proteins into different carrier populations for the apical or basolateral cell surface. Lipid-raft-independent apical carrier vesicles harbour the beta-galactoside-binding lectin galectin-3, which interacts directly with apical cargo in a glycan-dependent manner. These glycoproteins are mistargeted to the basolateral membrane in galectin-3-depleted cells, dedicating a central role to this lectin in raft-independent sorting as apical receptor. Here, we demonstrate that high-molecular-weight clusters are exclusively formed in the presence of galectin-3. Their stability is sensitive to increased carbohydrate concentrations, and cluster formation as well as apical sorting are perturbed in glycosylation-deficient Madin-Darby canine kidney (MDCK) II cells. Together, our data suggest that glycoprotein cross-linking by galectin-3 is required for apical sorting of non-raft-associated cargo.

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Year:  2007        PMID: 17319896     DOI: 10.1111/j.1600-0854.2007.00539.x

Source DB:  PubMed          Journal:  Traffic        ISSN: 1398-9219            Impact factor:   6.215


  64 in total

1.  Core-glycosylated mucin-like repeats from MUC1 are an apical targeting signal.

Authors:  Carol L Kinlough; Paul A Poland; Sandra J Gendler; Polly E Mattila; Di Mo; Ora A Weisz; Rebecca P Hughey
Journal:  J Biol Chem       Date:  2011-09-20       Impact factor: 5.157

Review 2.  Regulation of the epithelial sodium channel (ENaC) by membrane trafficking.

Authors:  Michael B Butterworth
Journal:  Biochim Biophys Acta       Date:  2010-03-27

Review 3.  Trafficking Ion Transporters to the Apical Membrane of Polarized Intestinal Enterocytes.

Authors:  Amy Christine Engevik; James R Goldenring
Journal:  Cold Spring Harb Perspect Biol       Date:  2018-01-02       Impact factor: 10.005

Review 4.  Regulation of membrane trafficking in polarized epithelial cells.

Authors:  Heike Fölsch
Journal:  Curr Opin Cell Biol       Date:  2008-02-20       Impact factor: 8.382

5.  Selective roles for cholesterol and actin in compartmentalization of different proteins in the Golgi and plasma membrane of polarized cells.

Authors:  Stéphanie Lebreton; Simona Paladino; Chiara Zurzolo
Journal:  J Biol Chem       Date:  2008-08-12       Impact factor: 5.157

Review 6.  Role of N-glycosylation in trafficking of apical membrane proteins in epithelia.

Authors:  Olga Vagin; Jeffrey A Kraut; George Sachs
Journal:  Am J Physiol Renal Physiol       Date:  2008-10-29

7.  LIM kinase 1 and cofilin regulate actin filament population required for dynamin-dependent apical carrier fission from the trans-Golgi network.

Authors:  Susana B Salvarezza; Sylvie Deborde; Ryan Schreiner; Fabien Campagne; Michael M Kessels; Britta Qualmann; Alfredo Caceres; Geri Kreitzer; Enrique Rodriguez-Boulan
Journal:  Mol Biol Cell       Date:  2008-11-05       Impact factor: 4.138

Review 8.  Hepatocyte polarity.

Authors:  Aleksandr Treyer; Anne Müsch
Journal:  Compr Physiol       Date:  2013-01       Impact factor: 9.090

Review 9.  Polarized endocytic transport: the roles of Rab11 and Rab11-FIPs in regulating cell polarity.

Authors:  Jian Jing; Rytis Prekeris
Journal:  Histol Histopathol       Date:  2009-09       Impact factor: 2.303

10.  Galectin-3 protein regulates mobility of N-cadherin and GM1 ganglioside at cell-cell junctions of mammary carcinoma cells.

Authors:  Cécile Boscher; Yu Zi Zheng; Ramya Lakshminarayan; Ludger Johannes; James W Dennis; Leonard J Foster; Ivan R Nabi
Journal:  J Biol Chem       Date:  2012-07-30       Impact factor: 5.157

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