Identification of ERGIC-53 as an intracellular transport receptor of α₁-antitrypsin

Secretory proteins are exported from the endoplasmic reticulum (ER) by bulk flow and/or receptor-mediated transport. Our understanding of this process is limited because of the low number of identified transport receptors and cognate cargo proteins. In mammalian cells, the lectin ER Golgi intermedia...

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Bibliographic Details
Published inThe Journal of cell biology Vol. 180; no. 4; pp. 705 - 712
Main Authors Nyfeler, Beat, Reiterer, Veronika, Wendeler, Markus W, Stefan, Eduard, Zhang, Bin, Michnick, Stephen W, Hauri, Hans-Peter
Format Journal Article
LanguageEnglish
Published The Rockefeller University Press 25.02.2008
Rockefeller University Press
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Summary:Secretory proteins are exported from the endoplasmic reticulum (ER) by bulk flow and/or receptor-mediated transport. Our understanding of this process is limited because of the low number of identified transport receptors and cognate cargo proteins. In mammalian cells, the lectin ER Golgi intermediate compartment 53-kD protein (ERGIC-53) represents the best characterized cargo receptor. It assists ER export of a subset of glycoproteins including coagulation factors V and VIII and cathepsin C and Z. Here, we report a novel screening strategy to identify protein interactions in the lumen of the secretory pathway using a yellow fluorescent protein-based protein fragment complementation assay. By screening a human liver complementary DNA library, we identify α1-antitrypsin (α1-AT) as previously unrecognized cargo of ERGIC-53 and show that cargo capture is carbohydrate- and conformation-dependent. ERGIC-53 knockdown and knockout cells display a specific secretion defect of α1-AT that is corrected by reintroducing ERGIC-53. The results reveal ERGIC-53 to be an intracellular transport receptor of α1-AT and provide direct evidence for active receptor-mediated ER export of a soluble secretory protein in higher eukaryotes.
Bibliography:Abbreviations used in this paper: α1-AT, α1-antitrypsin; COPII, coat protein II; ERGIC, ER Golgi intermediate compartment; MCFD2, multiple coagulation factor deficiency protein 2; MEF, mouse embryonic fibroblast; PCA, protein fragment complementation assay.
ISSN:0021-9525
1540-8140
DOI:10.1083/jcb.200709100