Glycobiology 2005-10-01

Endoplasmic reticulum retention of the large splice variant of the UDP-galactose transporter is caused by a dilysine motif.

Roland Kabuss, Angel Ashikov, Stefan Oelmann, Rita Gerardy-Schahn, Hans Bakker

Index: Glycobiology 15(10) , 905-11, (2005)

Full Text: HTML

Abstract

Nucleotide-sugar transporters supply mainly the Golgi glycosyltransferases with substrates. Some glycosyltransferases in the endoplasmic reticulum (ER), however, also use activated sugars. Recent studies have demonstrated that UDP-galactose (UDP-Gal) is the substrate for the ER resident ceramide-galactosyltransferase (cer-GalT) and cells expressing cer-GalT are able to retain the UDP-Gal transporter (UGT) by physical contacts formed between the two proteins. Here, we describe a second active mechanism for ER localization of the UGT. The UGT is produced in two splice forms UGT1 and UGT2. The proteins vary only at their extreme C-termini but show strikingly different intracellular distribution. Although N-terminally epitope tagged forms of UGT1 localize exclusively to the Golgi, similar constructs of UGT2 show both ER and Golgi localization. The dilysine motif KVKGS contained in UGT2 can be demonstrated to be responsible for the dual localization because: (1) disturbance of the signal via site specific mutation or C-terminal extension completely shifts the transporter to the Golgi, (2) transfer of the dilysine motif is sufficient to redistribute the Golgi CMP-sialic acid transporter to the ER, and (3) replacement of KVKGS by the strong ER retention signal KKNT is sufficient to completely retain UGT2 in the ER.


Related Compounds

  • h-lys-lys-oh 2hcl

Related Articles:

Canine zona pellucida glycoprotein-3: up-scaled production, immunization strategy and its outcome on fertility.

2015-01-01

[Vaccine 33(1) , 133-40, (2014)]

A single binding site for dilysine retrieval motifs and p23 within the gamma subunit of coatomer.

1998-09-29

[Proc. Natl. Acad. Sci. U. S. A. 95(20) , 11649-54, (1998)]

Intracellular targeting signals contribute to localization of coronavirus spike proteins near the virus assembly site.

2004-06-01

[J. Virol. 78(11) , 5913-22, (2004)]

Targeted gap junction protein constructs reveal connexin-specific differences in oligomerization.

2002-06-07

[J. Biol. Chem. 277(23) , 20911-8, (2002)]

Peptide binding in OppA, the crystal structures of the periplasmic oligopeptide binding protein in the unliganded form and in complex with lysyllysine.

1997-08-12

[Biochemistry 36(32) , 9747-58, (1997)]

More Articles...