Literature DB >> 22270363

Characterization of the arabinogalactan protein 31 (AGP31) of Arabidopsis thaliana: new advances on the Hyp-O-glycosylation of the Pro-rich domain.

May Hijazi1, Jessica Durand, Carole Pichereaux, Frédéric Pont, Elisabeth Jamet, Cécile Albenne.   

Abstract

Proteins are important actors in plant cell walls because they contribute to their architecture and their dynamics. Among them, hydroxyproline (Hyp)-rich glycoproteins constitute a complex family of O-glycoproteins with various structures and functions. In this study, we characterized an atypical Hyp-rich glycoprotein, AGP31 (arabinogalactan protein 31), which displays a multidomain organization unique in Arabidopsis thaliana, consisting of a short arabinogalactan protein (AGP) motif, a His stretch, a Pro-rich domain, and a C-terminal PAC (PRP-AGP containing Cys) domain. The use of various mass spectrometry strategies was innovative and powerful: it permitted us to locate Hyp residues, to demonstrate the presence of carbohydrates, and to refine their distribution over the Pro-rich domain. Most Hyp were isolated within repeated motifs such as KAOV, KSOV, K(PO/OP)T, K(PO/OP)V, T(PO/OP)V, and Y(PO/OP)T. A few extensin-like motifs with contiguous Hyp (SOOA and SOOT) were also found. The Pro-rich domain was shown to carry Gal residues on isolated Hyp but also Ara residues. The existence of new type Hyp-O-Gal/Ara-rich motifs not recognized by the β-glucosyl Yariv reagent but interacting with the peanut agglutinin lectin was proposed. In addition, the N-terminal short AGP motif was assumed to be substituted by arabinogalactans. Altogether, AGP31 was found to be highly heterogeneous in cell walls because arabinogalactans could be absent, Hyp-O-Gal/Ara-rich motifs of different sizes were observed, and truncated forms missing the C-terminal PAC domain were found, suggesting degradation in muro and/or partial glycosylation prior to secretion.

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Year:  2012        PMID: 22270363      PMCID: PMC3308734          DOI: 10.1074/jbc.M111.247874

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


  49 in total

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4.  Characterization of synthetic hydroxyproline-rich proteoglycans with arabinogalactan protein and extensin motifs in Arabidopsis.

Authors:  José M Estévez; Marcia J Kieliszewski; Natalie Khitrov; Chris Somerville
Journal:  Plant Physiol       Date:  2006-08-25       Impact factor: 8.340

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Authors:  A M Showalter
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  16 in total

1.  Arabinogalactan protein 31 (AGP31), a putative network-forming protein in Arabidopsis thaliana cell walls?

Authors:  May Hijazi; David Roujol; Huan Nguyen-Kim; Liliana Del Rocio Cisneros Castillo; Estelle Saland; Elisabeth Jamet; Cécile Albenne
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Review 3.  Arabinogalactan Proteins: Focus on the Role in Cellulose Synthesis and Deposition during Plant Cell Wall Biogenesis.

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4.  Arabinogalactan-proteins and the research challenges for these enigmatic plant cell surface proteoglycans.

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5.  Characterization of protein N-glycosylation by tandem mass spectrometry using complementary fragmentation techniques.

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6.  Cotton GalT1 encoding a putative glycosyltransferase is involved in regulation of cell wall pectin biosynthesis during plant development.

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7.  Plant cell wall proteomics: the leadership of Arabidopsis thaliana.

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Review 9.  An update on post-translational modifications of hydroxyproline-rich glycoproteins: toward a model highlighting their contribution to plant cell wall architecture.

Authors:  May Hijazi; Silvia M Velasquez; Elisabeth Jamet; José M Estevez; Cécile Albenne
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10.  Identification of the Abundant Hydroxyproline-Rich Glycoproteins in the Root Walls of Wild-Type Arabidopsis, an ext3 Mutant Line, and Its Phenotypic Revertant.

Authors:  Yuning Chen; Dening Ye; Michael A Held; Maura C Cannon; Tui Ray; Prasenjit Saha; Alexandra N Frye; Andrew J Mort; Marcia J Kieliszewski
Journal:  Plants (Basel)       Date:  2015-01-21
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