Literature DB >> 11169388

The CDTA-soluble pectic substances from soybean meal are composed of rhamnogalacturonan and xylogalacturonan but not homogalacturonan.

M M Huisman1, C T Fransen, J P Kamerling, J F Vliegenthart, H A Schols, A G Voragen.   

Abstract

Structural characteristics of pectic substances extracted from soybean meal cell walls (water unextractable solids) with a chelating agent-containing buffer (0.05M 1,2-diaminocyclohexane-N,N,N',N'-tetraacetic acid (CDTA) and 0.05M NH(4)-oxalate in 0.05M NaOAc buffer) were studied. The arabinogalactans present as side chains to the rhamnogalacturonan backbone were largely removed by enzymatic hydrolysis using endo-galactanase, exo-galactanase, endo-arabinanase, and arabinofuranosidase B. The remaining pectic backbone appeared to be resistant to enzymatic degradation by pectolytic enzymes. After partial acid hydrolysis of the isolated pectic backbone, one oligomeric and two polymeric populations were obtained by size-exclusion chromatography. Monosaccharide and linkage analyses, enzymatic degradation, and NMR spectroscopy of these populations showed that the pectic substances in the original extract contain both rhamnogalacturonan and xylogalacturonan regions, while homogalacturonan is absent. Copyright 2001 John Wiley & Sons, Inc.

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Year:  2001        PMID: 11169388     DOI: 10.1002/1097-0282(200103)58:3<279::AID-BIP1005>3.0.CO;2-1

Source DB:  PubMed          Journal:  Biopolymers        ISSN: 0006-3525            Impact factor:   2.505


  7 in total

1.  A xylogalacturonan epitope is specifically associated with plant cell detachment.

Authors:  William G T Willats; Lesley McCartney; Clare G Steele-King; Susan E Marcus; Andrew Mort; Miranda Huisman; Gert-Jan van Alebeek; Henk A Schols; Alphons G J Voragen; Angélique Le Goff; Estelle Bonnin; Jean-François Thibault; J Paul Knox
Journal:  Planta       Date:  2003-11-15       Impact factor: 4.116

Review 2.  Enzymatic deconstruction of backbone structures of the ramified regions in pectins.

Authors:  Dominic Wong
Journal:  Protein J       Date:  2008-01       Impact factor: 2.371

3.  Xyloglucan, galactomannan, glucuronoxylan, and rhamnogalacturonan I do not have identical structures in soybean root and root hair cell walls.

Authors:  Artur Muszyński; Malcolm A O'Neill; Easwaran Ramasamy; Sivakumar Pattathil; Utku Avci; Maria J Peña; Marc Libault; Md Shakhawat Hossain; Laurent Brechenmacher; William S York; Rommel M Barbosa; Michael G Hahn; Gary Stacey; Russell W Carlson
Journal:  Planta       Date:  2015-06-12       Impact factor: 4.116

4.  Biophysical consequences of remodeling the neutral side chains of rhamnogalacturonan I in tubers of transgenic potatoes.

Authors:  Peter Ulvskov; Helle Wium; David Bruce; Bodil Jørgensen; Karsten Bruun Qvist; Michael Skjøt; David Hepworth; Bernhard Borkhardt; Susanne Oxenbøll Sørensen
Journal:  Planta       Date:  2004-10-28       Impact factor: 4.116

5.  Changes in the abundance of cell wall apiogalacturonan and xylogalacturonan and conservation of rhamnogalacturonan II structure during the diversification of the Lemnoideae.

Authors:  Utku Avci; Maria J Peña; Malcolm A O'Neill
Journal:  Planta       Date:  2017-12-29       Impact factor: 4.116

Review 6.  Therapeutic Potentials of Antiviral Plants Used in Traditional African Medicine With COVID-19 in Focus: A Nigerian Perspective.

Authors:  Alfred Francis Attah; Adeshola Adebayo Fagbemi; Olujide Olubiyi; Hannah Dada-Adegbola; Akinseinde Oluwadotun; Anthony Elujoba; Chinedum Peace Babalola
Journal:  Front Pharmacol       Date:  2021-04-26       Impact factor: 5.810

7.  Development of an Affordable, Sustainable and Efficacious Plant-Based Immunomodulatory Food Ingredient Based on Bell Pepper or Carrot RG-I Pectic Polysaccharides.

Authors:  Sue McKay; Paul Oranje; Jari Helin; Jean H Koek; Ellen Kreijveld; Pieter van den Abbeele; Ute Pohl; Gordana Bothe; Maria Tzoumaki; Marcela Aparicio-Vergara; Annick Mercenier; Henk Schols; Ruud Albers
Journal:  Nutrients       Date:  2021-03-16       Impact factor: 5.717

  7 in total

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