Literature DB >> 18639953

O-glycosylation of protein subpopulations in alcohol-extracted rice proteins.

Michelle Kilcoyne1, Miti Shah, Jared Q Gerlach, Veer Bhavanandan, Vinay Nagaraj, Amy D Smith, Kazuhito Fujiyama, Ulf Sommer, Catherine E Costello, Neil Olszewski, Lokesh Joshi.   

Abstract

Mucin-type O-glycosylation has been well characterized in mammalian systems but not in plants. In this study, the purified alcohol-soluble, non-reduced protein (prolamin) fraction from rice seed was investigated for the occurrence of O-linked oligosaccharides. As storage prolamins are unlikely to be O-glycosylated, any O-glycosylation found was likely to belong to co-extracted proteins, whether because of association with the protein body or solubility. SDS-PAGE and MS analyses revealed 14 and 16kDa protein families in fractions that bound to the lectins peanut agglutinin (PNA), Vicia villosa lectin (VVL) and Jacalin, indicative of the presence of O-linked saccharides. Enzymatic cleavage, fluorescent labeling and high-performance liquid chromatography (HPLC) analysis demonstrated a peak consistent with Gal-beta-(1-->3)-GalNAc, with similar MS/MS fragmentation. Additionally, upon chemical analysis, a GlcNAc-containing O-linked carbohydrate moiety was discovered. Protein blotting with anti-O-GlcNAc antibody (clone CTD110.6) was positive in a subpopulation of the 14kDa alcohol-soluble protein fraction, but a hot capping experiment was negative. Therefore, the GlcNAc residue in this case is unlikely to be terminal. Additionally, a positive reaction with CTD110.6mAb cannot be taken as absolute proof of O-GlcNAc modification and further confirmatory experiments should be employed. We hypothesize that O-glycosylation may contribute to protein functionality or regulation. Further investigation is required to identify the specific proteins with these modifications. This 'reverse' approach could lead to the identification of proteins involved in mRNA targeting, signaling, translation, anchoring or maintenance of translational quiescence and may be applied to germinating rice seed extracts for further elucidation of protein function and regulation.

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Year:  2008        PMID: 18639953     DOI: 10.1016/j.jplph.2008.05.007

Source DB:  PubMed          Journal:  J Plant Physiol        ISSN: 0176-1617            Impact factor:   3.549


  4 in total

1.  Glyco-Engineering of Plant-Based Expression Systems.

Authors:  Rainer Fischer; Tanja Holland; Markus Sack; Stefan Schillberg; Eva Stoger; Richard M Twyman; Johannes F Buyel
Journal:  Adv Biochem Eng Biotechnol       Date:  2021       Impact factor: 2.635

2.  Engineering mammalian mucin-type O-glycosylation in plants.

Authors:  Zhang Yang; Damian P Drew; Bodil Jørgensen; Ulla Mandel; Søren S Bach; Peter Ulvskov; Steven B Levery; Eric P Bennett; Henrik Clausen; Bent L Petersen
Journal:  J Biol Chem       Date:  2012-02-14       Impact factor: 5.157

Review 3.  O-GlcNAc protein modification in plants: Evolution and function.

Authors:  Neil E Olszewski; Christopher M West; Slim O Sassi; Lynn M Hartweck
Journal:  Biochim Biophys Acta       Date:  2009-12-02

4.  Cross-feeding by Bifidobacterium breve UCC2003 during co-cultivation with Bifidobacterium bifidum PRL2010 in a mucin-based medium.

Authors:  Muireann Egan; Mary O'Connell Motherway; Michelle Kilcoyne; Marian Kane; Lokesh Joshi; Marco Ventura; Douwe van Sinderen
Journal:  BMC Microbiol       Date:  2014-11-25       Impact factor: 3.605

  4 in total

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