Literature DB >> 9653110

Mammalian Golgi apparatus UDP-N-acetylglucosamine transporter: molecular cloning by phenotypic correction of a yeast mutant.

E Guillen1, C Abeijon, C B Hirschberg.   

Abstract

Transporters in the Golgi apparatus membrane translocate nucleotide sugars from the cytosol into the Golgi lumen before these can be substrates for the glycosylation of proteins, lipids, and proteoglycans. We have cloned the mammalian Golgi membrane transporter for uridine diphosphate-N-acetylglucosamine by phenotypic correction with cDNA from MDCK cells of a recently characterized Kluyveromyces lactis mutant deficient in Golgi transport of the above nucleotide sugar. Phenotypically corrected transformants were separated from mutants in a fluorescent-activated cell sorter after labeling of K. lactis cells with fluorescein isothiocyanate (FITC) conjugated to Griffonia simplicifolia II lectin, which binds terminal N-acetylglucosamine. A 2-kb DNA fragment was found to restore the wild-type cell lectin binding phenotype, which reverted to the mutant one upon loss of the plasmid. The DNA fragment contained an ORF encoding a hydrophobic, multitransmembrane spanning protein of 326 aa that had only 22% amino acid sequence identity with the corresponding transporter from K. lactis but showed 53% amino acid sequence identity to the mammalian UDP-galactose transporters and 40% to the CMP-sialic acid transporter. Golgi vesicles from the transformant regained their ability to transport UDP-GlcNAc in an assay in vitro. The above results demonstrate that the mammalian Golgi UDP-GlcNAc transporter gene has all of the necessary information for the protein to be expressed and targeted functionally to the Golgi apparatus of yeast and that two proteins with very different amino acid sequences may transport the same solute within the same Golgi membrane.

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Year:  1998        PMID: 9653110      PMCID: PMC20899          DOI: 10.1073/pnas.95.14.7888

Source DB:  PubMed          Journal:  Proc Natl Acad Sci U S A        ISSN: 0027-8424            Impact factor:   11.205


  15 in total

Review 1.  Transporters of nucleotide sugars, nucleotide sulfate and ATP in the Golgi apparatus.

Authors:  C Abeijon; E C Mandon; C B Hirschberg
Journal:  Trends Biochem Sci       Date:  1997-06       Impact factor: 13.807

2.  Promoter activity associated with the left inverted terminal repeat of the killer plasmid k1 from yeast.

Authors:  X J Chen; M Wésolowski-Louvel; C Tanguy-Rougeau; H Fukuhara
Journal:  Biochimie       Date:  1991-09       Impact factor: 4.079

3.  Topography of glycosylation in yeast: characterization of GDPmannose transport and lumenal guanosine diphosphatase activities in Golgi-like vesicles.

Authors:  C Abeijon; P Orlean; P W Robbins; C B Hirschberg
Journal:  Proc Natl Acad Sci U S A       Date:  1989-09       Impact factor: 11.205

4.  Transport of sugar nucleotides into the lumen of vesicles derived from rat liver rough endoplasmic reticulum and Golgi apparatus.

Authors:  M Perez; C B Hirschberg
Journal:  Methods Enzymol       Date:  1987       Impact factor: 1.600

5.  A polarized epithelial cell mutant deficient in translocation of UDP-galactose into the Golgi complex.

Authors:  A W Brändli; G C Hansson; E Rodriguez-Boulan; K Simons
Journal:  J Biol Chem       Date:  1988-11-05       Impact factor: 5.157

6.  A gene-cloning system for Kluyveromyces lactis and isolation of a chromosomal gene required for killer toxin production.

Authors:  X J Chen; M Wésolowski-Louvel; C Tanguy-Rougeau; M M Bianchi; L Fabiani; M Saliola; C Falcone; L Frontali; H Fukuhara
Journal:  J Basic Microbiol       Date:  1988       Impact factor: 2.281

7.  Effect of nucleotides on translocation of sugar nucleotides and adenosine 3'-phosphate 5'-phosphosulfate into Golgi apparatus vesicles.

Authors:  J M Capasso; C B Hirschberg
Journal:  Biochim Biophys Acta       Date:  1984-10-17

8.  Transport of UDP-galactose into the Golgi lumen regulates the biosynthesis of proteoglycans.

Authors:  L Toma; M A Pinhal; C P Dietrich; H B Nader; C B Hirschberg
Journal:  J Biol Chem       Date:  1996-02-16       Impact factor: 5.157

9.  Purification of an alpha-N-acetylglucosaminyltransferase from the yeast Kluyveromyces lactis and a study of mutants defective in this enzyme activity.

Authors:  R H Douglas; C E Ballou
Journal:  Biochemistry       Date:  1982-03-30       Impact factor: 3.162

10.  Guanosine diphosphatase is required for protein and sphingolipid glycosylation in the Golgi lumen of Saccharomyces cerevisiae.

Authors:  C Abeijon; K Yanagisawa; E C Mandon; A Häusler; K Moremen; C B Hirschberg; P W Robbins
Journal:  J Cell Biol       Date:  1993-07       Impact factor: 10.539

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  23 in total

1.  A missense mutation in the bovine SLC35A3 gene, encoding a UDP-N-acetylglucosamine transporter, causes complex vertebral malformation.

Authors:  Bo Thomsen; Per Horn; Frank Panitz; Emøke Bendixen; Anette H Petersen; Lars-Erik Holm; Vivi H Nielsen; Jørgen S Agerholm; Jens Arnbjerg; Christian Bendixen
Journal:  Genome Res       Date:  2005-12-12       Impact factor: 9.043

2.  Conserved Glu-47 and Lys-50 residues are critical for UDP-N-acetylglucosamine/UMP antiport activity of the mouse Golgi-associated transporter Slc35a3.

Authors:  M Agustina Toscanini; M Belén Favarolo; F Luis Gonzalez Flecha; Berit Ebert; Carsten Rautengarten; Luis M Bredeston
Journal:  J Biol Chem       Date:  2019-05-22       Impact factor: 5.157

3.  Independent and simultaneous translocation of two substrates by a nucleotide sugar transporter.

Authors:  Carolina E Caffaro; Carlos B Hirschberg; Patricia M Berninsone
Journal:  Proc Natl Acad Sci U S A       Date:  2006-10-23       Impact factor: 11.205

4.  SLC35A2-CDG: Functional characterization, expanded molecular, clinical, and biochemical phenotypes of 30 unreported Individuals.

Authors:  Bobby G Ng; Paulina Sosicka; Satish Agadi; Mohammed Almannai; Carlos A Bacino; Rita Barone; Lorenzo D Botto; Jennifer E Burton; Colleen Carlston; Brian Hon-Yin Chung; Julie S Cohen; David Coman; Katrina M Dipple; Naghmeh Dorrani; William B Dobyns; Abdallah F Elias; Leon Epstein; William A Gahl; Domenico Garozzo; Trine Bjørg Hammer; Jaclyn Haven; Delphine Héron; Matthew Herzog; George E Hoganson; Jesse M Hunter; Mahim Jain; Jane Juusola; Shenela Lakhani; Hane Lee; Joy Lee; Katherine Lewis; Nicola Longo; Charles Marques Lourenço; Christopher C Y Mak; Dianalee McKnight; Bryce A Mendelsohn; Cyril Mignot; Ghayda Mirzaa; Wendy Mitchell; Hiltrud Muhle; Stanley F Nelson; Mariusz Olczak; Christina G S Palmer; Arthur Partikian; Marc C Patterson; Tyler M Pierson; Shane C Quinonez; Brigid M Regan; M Elizabeth Ross; Maria J Guillen Sacoto; Fernando Scaglia; Ingrid E Scheffer; Devorah Segal; Nilika Shah Singhal; Pasquale Striano; Luisa Sturiale; Joseph D Symonds; Sha Tang; Eric Vilain; Mary Willis; Lynne A Wolfe; Hui Yang; Shoji Yano; Zöe Powis; Sharon F Suchy; Jill A Rosenfeld; Andrew C Edmondson; Stephanie Grunewald; Hudson H Freeze
Journal:  Hum Mutat       Date:  2019-04-24       Impact factor: 4.878

5.  SQV-7, a protein involved in Caenorhabditis elegans epithelial invagination and early embryogenesis, transports UDP-glucuronic acid, UDP-N- acetylgalactosamine, and UDP-galactose.

Authors:  P Berninsone; H Y Hwang; I Zemtseva; H R Horvitz; C B Hirschberg
Journal:  Proc Natl Acad Sci U S A       Date:  2001-03-20       Impact factor: 11.205

6.  Use of combinatorial genetic libraries to humanize N-linked glycosylation in the yeast Pichia pastoris.

Authors:  Byung-Kwon Choi; Piotr Bobrowicz; Robert C Davidson; Stephen R Hamilton; David H Kung; Huijuan Li; Robert G Miele; Juergen H Nett; Stefan Wildt; Tillman U Gerngross
Journal:  Proc Natl Acad Sci U S A       Date:  2003-04-17       Impact factor: 11.205

7.  Molecular and functional characterization of microsomal UDP-glucuronic acid uptake by members of the nucleotide sugar transporter (NST) family.

Authors:  Tsutomu Kobayashi; Judith E Sleeman; Michael W H Coughtrie; Brian Burchell
Journal:  Biochem J       Date:  2006-12-01       Impact factor: 3.857

8.  Impaired O-linked N-acetylglucosaminylation in the endoplasmic reticulum by mutated epidermal growth factor (EGF) domain-specific O-linked N-acetylglucosamine transferase found in Adams-Oliver syndrome.

Authors:  Mitsutaka Ogawa; Shogo Sawaguchi; Takami Kawai; Daita Nadano; Tsukasa Matsuda; Hirokazu Yagi; Koichi Kato; Koichi Furukawa; Tetsuya Okajima
Journal:  J Biol Chem       Date:  2014-12-08       Impact factor: 5.157

9.  Biosynthesis of GlcNAc-rich N- and O-glycans in the Golgi apparatus does not require the nucleotide sugar transporter SLC35A3.

Authors:  Bozena Szulc; Paulina Sosicka; Dorota Maszczak-Seneczko; Edyta Skurska; Auhen Shauchuk; Teresa Olczak; Hudson H Freeze; Mariusz Olczak
Journal:  J Biol Chem       Date:  2020-09-16       Impact factor: 5.157

Review 10.  Molecular physiology and pathology of the nucleotide sugar transporter family (SLC35).

Authors:  Nobuhiro Ishida; Masao Kawakita
Journal:  Pflugers Arch       Date:  2003-05-21       Impact factor: 3.657

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