Literature DB >> 8343953

Transcytosis of the polymeric Ig receptor requires phosphorylation of serine 664 in the absence but not the presence of dimeric IgA.

R P Hirt1, G J Hughes, S Frutiger, P Michetti, C Perregaux, O Poulain-Godefroy, N Jeanguenat, M R Neutra, J P Kraehenbuhl.   

Abstract

MDCK cells expressing the polymeric immunoglobulin (poly-Ig) receptor, cocultured with IgA-producing hybridoma cells, transported dimeric IgA (dIgA) from the basolateral into the lumenal compartment, where it was recovered as secretory component-dIgA complexes. The tail of the receptor was phosphorylated on serines 664 and 726. Each serine was mutated to alanine. Appearance of A726 receptor at the basolateral surface was reduced approximately 5-fold. This was accompanied by a approximately 5-fold reduction in dIgA transcytosis. Basolateral delivery of receptor was not affected by mutation A664, and in the absence of dIgA, the receptor accumulated in recycling basolateral endosomes. In coculture, however, dIgA transcytosis by A664 receptor was normal. Thus, entry of receptor into the transcytotic pathway requires Ser-664 phosphorylation only in the absence of dIgA.

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Year:  1993        PMID: 8343953     DOI: 10.1016/0092-8674(93)90416-n

Source DB:  PubMed          Journal:  Cell        ISSN: 0092-8674            Impact factor:   41.582


  24 in total

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6.  Stimulation of transcytosis of the polymeric immunoglobulin receptor by dimeric IgA.

Authors:  W Song; M Bomsel; J Casanova; J P Vaerman; K Mostov
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7.  Matrix and laminin synthesis in MDCK cells in vitro.

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8.  Serine phosphorylation site of the 46-kDa mannose 6-phosphate receptor is required for transport to the plasma membrane in Madin-Darby canine kidney and mouse fibroblast cells.

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Authors:  F Luton; M H Cardone; M Zhang; K E Mostov
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10.  Simplifying the synthesis of SIgA: combination of dIgA and rhSC using affinity chromatography.

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