Literature DB >> 12473191

Occurrence of secretory glycoprotein-specific GalNAc beta 1-->4GlcNAc sequence in N-glycans in MDCK cells.

Takashi Ohkura1, Akira Seko, Sayuri Hara-Kuge, Katsuko Yamashita.   

Abstract

Many reports show that N-glycans of glycoproteins play important roles in vectorial transport in MDCK cells. To assess whether structural differences in N-glycans exist between secretory glycoproteins and membrane glycoproteins, we studied the N-glycan structures of the glycoproteins isolated from MDCK cells. Polarized MDCK cells were metabolically labeled with [3H]glucosamine, and (3)H-labeled N-glycans of four glycoprotein fractions, secretory glycoproteins in apical and basolateral media, and apical and basolateral membrane glycoproteins, were released by glycopeptidase F. The structures of the free N-glycans were comparatively analyzed using various lectin column chromatographies and sequential glycosidase digestion. The four samples commonly contained high-mannose-type glycans and bi- and tri-antennary glycans with a bisected or non-bisected trimannosyl core. However, secretory glycoproteins in both media predominantly contained (sialyl)LacdiNAc sequences, +/-Sia alpha 2-->6GalNAc beta 1-->4GlcNAc beta 1-->R, which linked only to a non-bisected trimannosyl core. beta1-->4N-acetylgalactosaminyltransferase (beta 4GalNAc-T) activity in MDCK cells preferred non-bisected glycans to bisected ones in accordance with the proposed N-glycan structures. This secretory glycoprotein-predominant LacdiNAc sequence was also found in the case of human embryonic kidney 293 cells. These results suggest that the secretory glycoprotein-specific (sialyl)LacdiNAc sequence and the corresponding beta 4GalNAc-T are involved in transport of secretory glycoproteins.

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Year:  2002        PMID: 12473191     DOI: 10.1093/oxfordjournals.jbchem.a003302

Source DB:  PubMed          Journal:  J Biochem        ISSN: 0021-924X            Impact factor:   3.387


  5 in total

1.  Priming mass spectrometry-based sulfoglycomic mapping for identification of terminal sulfated lacdiNAc glycotope.

Authors:  Shin-Yi Yu; Lan-Yi Chang; Chu-Wen Cheng; Chi-Chi Chou; Michiko N Fukuda; Kay-Hooi Khoo
Journal:  Glycoconj J       Date:  2012-06-01       Impact factor: 2.916

2.  Identification of mammalian glycoproteins with type-I LacdiNAc structures synthesized by the glycosyltransferase B3GALNT2.

Authors:  Takahiro Nakane; Kiyohiko Angata; Takashi Sato; Hiroyuki Kaji; Hisashi Narimatsu
Journal:  J Biol Chem       Date:  2019-03-21       Impact factor: 5.157

3.  13C-sialic acid labeling of glycans on glycoproteins using ST6Gal-I.

Authors:  Megan A Macnaughtan; Fang Tian; Shan Liu; Lu Meng; Seongha Park; Parastoo Azadi; Kelley W Moremen; James H Prestegard
Journal:  J Am Chem Soc       Date:  2008-08-14       Impact factor: 15.419

4.  Glycoproteins of drusen and drusen-like lesions.

Authors:  Yvonne D'souza; Carolyn J P Jones; Richard Bonshek
Journal:  J Mol Histol       Date:  2007-09-11       Impact factor: 2.611

5.  Acquisition of Innate Inhibitor Resistance and Mammalian Pathogenicity During Egg Adaptation by the H9N2 Avian Influenza Virus.

Authors:  Chung-Young Lee; Se-Hee An; Jun-Gu Choi; Youn-Jeong Lee; Jae-Hong Kim; Hyuk-Joon Kwon
Journal:  Front Microbiol       Date:  2018-08-21       Impact factor: 5.640

  5 in total

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