Literature DB >> 23341449

The polysialyltransferases interact with sequences in two domains of the neural cell adhesion molecule to allow its polysialylation.

Matthew G Thompson1, Deirdre A Foley, Karen J Colley.   

Abstract

The neural cell adhesion molecule (NCAM) is the major substrate for the polysialyltransferases (polySTs), ST8SiaII/STX and ST8SiaIV/PST. The polysialylation of NCAM N-glycans decreases cell adhesion and alters signaling. Previous work demonstrated that the first fibronectin type III repeat (FN1) of NCAM is required for polyST recognition and the polysialylation of the N-glycans on the adjacent Ig5 domain. In this work, we highlight the importance of an FN1 acidic patch in polyST recognition and also reveal that the polySTs are required to interact with sequences in the Ig5 domain for polysialylation to occur. We find that features of the Ig5 domain of the olfactory cell adhesion molecule (OCAM) are responsible for its lack of polysialylation. Specifically, two basic OCAM Ig5 residues (Lys and Arg) found near asparagines equivalent to those carrying the polysialylated N-glycans in NCAM substantially decrease or eliminate polysialylation when used to replace the smaller and more neutral residues (Ser and Asn) in analogous positions in NCAM Ig5. This decrease in polysialylation does not reflect altered glycosylation but instead is correlated with a decrease in polyST-NCAM binding. In addition, inserting non-conserved OCAM sequences into NCAM Ig5, including an "extra" N-glycosylation site, decreases or completely blocks NCAM polysialylation. Taken together, these results indicate that the polySTs not only recognize an acidic patch in the FN1 domain of NCAM but also must contact sequences in the Ig5 domain for polysialylation of Ig5 N-glycans to occur.

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Year:  2013        PMID: 23341449      PMCID: PMC3591636          DOI: 10.1074/jbc.M112.438374

Source DB:  PubMed          Journal:  J Biol Chem        ISSN: 0021-9258            Impact factor:   5.157


  48 in total

1.  Presence of the long chain form of polysialic acid of the neural cell adhesion molecule in Wilms' tumor. Identification of a cell adhesion molecule as an oncodevelopmental antigen and implications for tumor histogenesis.

Authors:  J Roth; C Zuber; P Wagner; I Blaha; D Bitter-Suermann; P U Heitz
Journal:  Am J Pathol       Date:  1988-11       Impact factor: 4.307

2.  Neural cell adhesion molecule: structure, immunoglobulin-like domains, cell surface modulation, and alternative RNA splicing.

Authors:  B A Cunningham; J J Hemperly; B A Murray; E A Prediger; R Brackenbury; G M Edelman
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3.  Evaluation of polysialic acid in the diagnosis of Wilms' tumor. A comparative study on urinary tract tumors and non-neuroendocrine tumors.

Authors:  J Roth; D Brada; I Blaha; C Ghielmini; D Bitter-Suermann; P Komminoth; P U Heitz
Journal:  Virchows Arch B Cell Pathol Incl Mol Pathol       Date:  1988

4.  Sequences prior to conserved catalytic motifs of polysialyltransferase ST8Sia IV are required for substrate recognition.

Authors:  Joseph L Zapater; Karen J Colley
Journal:  J Biol Chem       Date:  2011-12-19       Impact factor: 5.157

5.  Translocation across Golgi vesicle membranes: a CHO glycosylation mutant deficient in CMP-sialic acid transport.

Authors:  S L Deutscher; N Nuwayhid; P Stanley; E I Briles; C B Hirschberg
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6.  Differential biosynthesis of polysialic acid on neural cell adhesion molecule (NCAM) and oligosaccharide acceptors by three distinct alpha 2,8-sialyltransferases, ST8Sia IV (PST), ST8Sia II (STX), and ST8Sia III.

Authors:  K Angata; M Suzuki; J McAuliffe; Y Ding; O Hindsgaul; M Fukuda
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7.  Polysialic acid in human milk. CD36 is a new member of mammalian polysialic acid-containing glycoprotein.

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8.  Polysialic acid of the neural cell adhesion molecule distinguishes small cell lung carcinoma from carcinoids.

Authors:  P Komminoth; J Roth; P M Lackie; D Bitter-Suermann; P U Heitz
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10.  The minimal structural domains required for neural cell adhesion molecule polysialylation by PST/ST8Sia IV and STX/ST8Sia II.

Authors:  Brett E Close; Shalu Shiv Mendiratta; Kristin M Geiger; Lucy J Broom; Li-Lun Ho; Karen J Colley
Journal:  J Biol Chem       Date:  2003-06-05       Impact factor: 5.157

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  11 in total

1.  Autopolysialylation of polysialyltransferases is required for polysialylation and polysialic acid chain elongation on select glycoprotein substrates.

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Journal:  J Biol Chem       Date:  2017-11-28       Impact factor: 5.157

2.  Changes in polysialic acid expression on myeloid cells during differentiation and recruitment to sites of inflammation: role in phagocytosis.

Authors:  Nicholas M Stamatos; Lei Zhang; Anne Jokilammi; Jukka Finne; Wilbur H Chen; Abderrahman El-Maarouf; Alan S Cross; Kim G Hankey
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3.  Structure of human ST8SiaIII sialyltransferase provides insight into cell-surface polysialylation.

Authors:  Gesa Volkers; Liam J Worrall; David H Kwan; Ching-Ching Yu; Lars Baumann; Emilie Lameignere; Gregory A Wasney; Nichollas E Scott; Warren Wakarchuk; Leonard J Foster; Stephen G Withers; Natalie C J Strynadka
Journal:  Nat Struct Mol Biol       Date:  2015-07-20       Impact factor: 15.369

4.  The Polybasic Region of the Polysialyltransferase ST8Sia-IV Binds Directly to the Neural Cell Adhesion Molecule, NCAM.

Authors:  Gaurang P Bhide; Gerd Prehna; Benjamin E Ramirez; Karen J Colley
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5.  Improved methods to characterize the length and quantity of highly unstable PolySialic acids subject category: (Carbohydrates, chromatographic techniques).

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6.  Sequence Requirements for Neuropilin-2 Recognition by ST8SiaIV and Polysialylation of Its O-Glycans.

Authors:  Gaurang P Bhide; Ninoshka R J Fernandes; Karen J Colley
Journal:  J Biol Chem       Date:  2016-02-16       Impact factor: 5.157

Review 7.  Sialic acids in the brain: gangliosides and polysialic acid in nervous system development, stability, disease, and regeneration.

Authors:  Ronald L Schnaar; Rita Gerardy-Schahn; Herbert Hildebrandt
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8.  Pharmacological inhibition of polysialyltransferase ST8SiaII modulates tumour cell migration.

Authors:  Yousef M J Al-Saraireh; Mark Sutherland; Bradley R Springett; Friedrich Freiberger; Goreti Ribeiro Morais; Paul M Loadman; Rachel J Errington; Paul J Smith; Minoru Fukuda; Rita Gerardy-Schahn; Laurence H Patterson; Steven D Shnyder; Robert A Falconer
Journal:  PLoS One       Date:  2013-08-09       Impact factor: 3.240

Review 9.  Glycobiology of neuroblastoma: impact on tumor behavior, prognosis, and therapeutic strategies.

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Review 10.  NCAM1 Polysialylation: The Prion Protein's Elusive Reason for Being?

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Journal:  ASN Neuro       Date:  2016-11-22       Impact factor: 4.146

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