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PMID: 12228586 Published · ppublish English Journal Article

Cell-Free Synthesis of Pectin (Identification and Partial Characterization of Polygalacturonate 4-[alpha]-Galacturonosyltransferase and Its Products from Membrane Preparations of Tobacco Cell-Suspension Cultures).

Plant physiology ·Vol. 109 ·No. 1 ·1995-09-00 ·Pages 141-152

Doong RL, Liljebjelke K, Fralish G, Kumar A, Mohnen D

Abstract

Polygalacturonate 4-[alpha]-galacturonosyltransferase (EC 2.4.1.43) activity has been identified in microsomal membranes isolated from tobacco (Nicotiana tabacum L. cv Samsun) cell-suspension cultures. Incubation of UDP-[14C]galacturonic acid with tobacco membranes results in a time-dependent incorporation of [14C]galacturonic acid into a chloroform-methanol-precipitable and 65% ethanol-insoluble product. The optimal synthesis of product occurs at a pH of 7.8, 25 to 30[deg]C, an apparent Km for UDP-D-galacturonic acid of approximately 8.9 [mu]M, and a Vmax of approximately 150 pmol min-1 mg-1 protein. The product was characterized by scintillation counting, thin-layer chromatography, high-performance anion-exchange chromatography, and gel-filtration chromatography in combination with enzymatic and chemical treatments. The intact product has a molecular mass of approximately 105,000 D based on dextran molecular standards. The product was treated with base to hydrolyze ester linkages (e.g. methyl esters), digested with a homogeneous endopolygalacturonase (EPGase), or base and EPGase treated. Base and EPGase treatment results in cleavage of 34 to 89% of 14C-labeled product into components that co-chromatograph with mono-, di-, and trigalacturonic acid, indicating that a large portion of product contains contiguous 1,4-linked [alpha]-D-galactosyluronic acid residues. Optimal EPGase fragmentation of the product requires base treatment prior to enzymatic digestion, suggesting that 45 to 67% of the galacturonic acid residues in the synthesized homogalacturonan are esterified. At least 40% of the base-sensitive linkages were shown to be methyl esters by comparing the sensitivity of base-treated and pectin methylesterase-treated products to fragmentation by EPGase.

Authors & Affiliations
5 authors, click to expand affiliations / ORCID
Doong R. L.
Complex Carbohydrate Research Center and Department of Biochemistry and Molecular Biology, University of Georgia, 220 Riverbend Road, Athens, Georgia 30602-4712.
Liljebjelke K.
Fralish G.
Kumar A.
Mohnen D.
References (23)
23 references, click to expand
  1. Determination of the pattern of methyl esterification in pectin. Distribution of contiguous nonesterified residues.
    Carbohydr Res. 1993 Sep 2;247:21-35 PMID: 8221720
  2. Pectic enzymes.
    Adv Carbohydr Chem Biochem. 1976;33:323-85 PMID: 11647
  3. Partial purification of Golgi-bound arabinosyltransferase and two isoforms of xylosyltransferase from French bean (Phaseolus vulgaris L.).
    Biochem J. 1992 Dec 15;288 ( Pt 3):817-22 PMID: 1471996
  4. Pectic Cell Wall Fragments Regulate Tobacco Thin-Cell-Layer Explant Morphogenesis.
    Plant Cell. 1989 Aug;1(8):747-755 PMID: 12359909
  5. Pectin synthesis during the wall regeneration of plasmolysed tobacco leaf cells.
    Biochem J. 1975 Sep;150(3):433-40 PMID: 1212200
  6. Properties of a polygalacturonic acid-synthesizing enzyme system from Phaseolus aureus seedlings.
    Arch Biochem Biophys. 1966 Sep 26;116(1):446-52 PMID: 5961848
  7. Synthesis of (1-->3), (1-->4)-beta-D-glucan in the Golgi apparatus of maize coleoptiles.
    Proc Natl Acad Sci U S A. 1993 May 1;90(9):3850-4 PMID: 8483902
  8. The analysis of kinetic data in biochemistry. A critical evaluation of methods.
    FEBS Lett. 1976 Apr 1;63(2):225-30 PMID: 1261694
  9. Pectinases and pectic polysaccharides.
    Prog Ind Microbiol. 1974;13:61-119 PMID: 4612612
  10. Novel O-D-galacturonoyl esters in the pectic polysaccharides of suspension-cultured plant cells.
    Plant Physiol. 1993 Nov;103(3):993-9 PMID: 8022945
  11. Substrate specificity in pectin synthesis.
    Biochem Biophys Res Commun. 1966 Mar 22;22(6):650-7 PMID: 5944766
  12. Cooperation of enzymes responsible for polymerisation and methylation in pectin biosynthesis.
    Z Naturforsch B. 1969 Jan;24(1):28-33 PMID: 4388873
  13. Cell Wall Metabolism in Ripening Fruit (VI. Effect of the Antisense Polygalacturonase Gene on Cell Wall Changes Accompanying Ripening in Transgenic Tomatoes).
    Plant Physiol. 1993 Oct;103(2):429-434 PMID: 12231951
  14. Enzymatic synthesis and purification of uridine diphosphate [14C]galacturonic acid: a substrate for pectin biosynthesis.
    Anal Biochem. 1995 Mar 1;225(2):296-304 PMID: 7762795
  15. Isolation of uridine diphosphate-galacturonic acid from seedlings of Phaseolus aureus.
    Biochim Biophys Acta. 1961 Nov 11;53:589-90 PMID: 14479162
  16. Oligosaccharins: structures and signal transduction.
    Plant Mol Biol. 1994 Dec;26(5):1379-411 PMID: 7858196
  17. Analysis of oligogalacturonic acids with 50 or fewer residues by high-performance anion-exchange chromatography and pulsed amperometric detection.
    Anal Biochem. 1990 Feb 1;184(2):200-6 PMID: 2327565
  18. A specific, high-affinity binding site for the hepta-beta-glucoside elicitor exists in soybean membranes.
    Plant Cell. 1991 Feb;3(2):137-47 PMID: 1840905
  19. Cell Walls of Tobacco Cells and Changes in Composition Associated with Reduced Growth upon Adaptation to Water and Saline Stress.
    Plant Physiol. 1989 Sep;91(1):48-53 PMID: 16667041
  20. Metabolic relationships of the isolated fractions of the pectic substances of actively growing sycamore cells.
    Biochem J. 1967 Oct;105(1):45-59 PMID: 6056639
  21. Host-Pathogen Interactions : XXXIII. A Plant Protein Converts a Fungal Pathogenesis Factor into an Elicitor of Plant Defense Responses.
    Plant Physiol. 1989 Jun;90(2):542-8 PMID: 16666805
  22. Correlation of Pectin Methylesterase Activity in Root Caps of Pea with Root Border Cell Separation.
    Plant Physiol. 1994 Oct;106(2):739-745 PMID: 12232366
  23. Covalent Cross-Links in the Cell Wall.
    Plant Physiol. 1994 Feb;104(2):315-320 PMID: 12232082
Article Info
Journal
Plant physiology
Abbr.
Plant Physiol
ISSN
1532-2548
Published
1995-09-00
Pages
141-152
Language
English
Region
United States
NLM ID
0401224
PMCID
PMC157570
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