Literature DB >> 23079239

Structural elucidation of rhamnogalacturonans from flaxseed hulls.

Ke-Ying Qian1, Steve W Cui, John Nikiforuk, H Douglas Goff.   

Abstract

The structure of acidic fraction gum (AFG) from flaxseed hulls was elucidated by methylation analysis and 1D/2D NMR spectroscopy. This acidic fraction was separated from water-soluble flaxseed gum using anion-exchange chromatography. AFG consisted of a rhamnogalacturonan-I (RG-I) backbone that features diglycosyl repeating units, →2)-α-l-Rhap-(1→4)-α-d-GalpA-(1→. Rhamnosyl residues (38.2%) were the most abundant neutral sugar component. It was present mainly as unbranched (16.5%) and branched (19.5%) →2)-α-l-Rhap-(1→ at O-3. Most of its branches were terminated by monosaccharides, α/β-d-Galp-(1→ (19.6%), α-l-Fucp-(1→ (4.5%) or β-d-Xylp-(1→ (3.1%). However, when this branching site was occasionally appended with →4)-α-d-GalpA-(1→ or →2)-α-l-Rhap-(1→, side chains may consist of rhamnogalacturonan-I (RG-I), homorhamnan (HR) or a mixture of both. AFG was highly branched as indicated by its high degree of branching (0.55). A possible structure of AFG was proposed: (HR, RG-I, and HG refer to homorhamnan, rhamnogalacturonan-I, and homogalacturonan, respectively. The locations of HR, RG-I, and HG are interchangeable; (m+n)/(n+i)≈1.5. The substitution rate of R(1) is ∼54%. R(1) is mostly monosaccharide (α/β-d-Galp-(1→, α-l-Fucp-(1→ or β-d-Xylp-(1→). R(1) may also occasionally be a longer side chain with more than two residues beginning with →4)-α-GalpA-(1→ or →2)-α-l-Rhap-(1→, wherein the side-chain structure may be similar to part of the main chain.).
Copyright © 2012. Published by Elsevier Ltd.

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Year:  2012        PMID: 23079239     DOI: 10.1016/j.carres.2012.08.005

Source DB:  PubMed          Journal:  Carbohydr Res        ISSN: 0008-6215            Impact factor:   2.104


  5 in total

1.  Conformational Properties of Flaxseed Rhamnogalacturonan-I and Correlation between Primary Structure and Conformation.

Authors:  Qingbin Guo; Zhengxin Shan; Yanhui Shao; Nifei Wang; Keying Qian; H Douglas Goff; Qi Wang; Steve W Cui; Huihuang H Ding
Journal:  Polymers (Basel)       Date:  2022-06-30       Impact factor: 4.967

2.  Chemical Composition and Rheological Properties of Seed Mucilages of Various Yellow- and Brown-Seeded Flax (Linum usitatissimum L.) Cultivars.

Authors:  Yana Troshchynska; Roman Bleha; Andriy Synytsya; Jiří Štětina
Journal:  Polymers (Basel)       Date:  2022-05-17       Impact factor: 4.967

3.  Ionic strength and hydrogen bonding effects on whey protein isolate-flaxseed gum coacervate rheology.

Authors:  Jun Liu; Youn Young Shim; Martin J T Reaney
Journal:  Food Sci Nutr       Date:  2020-03-10       Impact factor: 2.863

4.  Linseed hydrogel based floating drug delivery system for fluoroquinolone antibiotics: Design, in vitro drug release and in vivo real-time floating detection.

Authors:  Fatima Akbar Sheikh; Muhammad Ajaz Hussain; Muhammad Umer Ashraf; Muhammad Tahir Haseeb; Muhammad Farid-Ul-Haq
Journal:  Saudi Pharm J       Date:  2020-03-19       Impact factor: 4.330

Review 5.  Structural Characterization and Functional Properties of Flaxseed Hydrocolloids and Their Application.

Authors:  František Lorenc; Markéta Jarošová; Jan Bedrníček; Pavel Smetana; Jan Bárta
Journal:  Foods       Date:  2022-08-02
  5 in total

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