Structural Biology of Pectin Degradation byEnterobacteriaceae
- 1 June 2008
- journal article
- Published by American Society for Microbiology in Microbiology and Molecular Biology Reviews
- Vol. 72 (2) , 301-316
- https://doi.org/10.1128/mmbr.00038-07
Abstract
Pectin is a structural polysaccharide that is integral for the stability of plant cell walls. During soft rot infection, secreted virulence factors from pectinolytic bacteria such as Erwinia spp. degrade pectin, resulting in characteristic plant cell necrosis and tissue maceration. Catabolism of pectin and its breakdown products by pectinolytic bacteria occurs within distinct cellular environments. This process initiates outside the cell, continues within the periplasmic space, and culminates in the cytoplasm. Although pectin utilization is well understood at the genetic and biochemical levels, an inclusive structural description of pectinases and pectin binding proteins by both extracellular and periplasmic enzymes has been lacking, especially following the recent characterization of several periplasmic components and protein-oligogalacturonide complexes. Here we provide a comprehensive analysis of the protein folds and mechanisms of pectate lyases, polygalacturonases, and carbohydrate esterases and the binding specificities of two periplasmic pectic binding proteins from Enterobacteriaceae. This review provides a structural understanding of the molecular determinants of pectin utilization and the mechanisms driving catabolite selectivity and flow through the pathway.Keywords
This publication has 83 references indexed in Scilit:
- Molecular basis of the activity of the phytopathogen pectin methylesteraseThe EMBO Journal, 2007
- Differential Regulation of Two Oligogalacturonate Outer Membrane Channels, KdgN and KdgM, ofDickeya dadantii(Erwinia chrysanthemi)Journal of Bacteriology, 2007
- The Structural Basis for Exopolygalacturonase Activity in a Family 28 Glycoside HydrolaseJournal of Molecular Biology, 2007
- Conformational Equilibria and Free Energy Profiles for the Allosteric Transition of the Ribose-binding ProteinJournal of Molecular Biology, 2005
- The X-ray structure of Aspergillus aculeatus polygalacturonase and a modeled structure of the polygalacturonase-octagalacturonate complexJournal of Molecular Biology, 2001
- The PDZ domain of OutC and the N-terminal region of OutD determine the secretion specificity of the type II out pathway of Erwinia chrysanthemiJournal of Molecular Biology, 2001
- Three-dimensional structure of Erwinia chrysanthemi pectin methylesterase reveals a novel esterase active siteJournal of Molecular Biology, 2001
- Genetic and biochemical characterization of an exopolygalacturonase and a pectate lyase fromYersinia enterocoliticaCanadian Journal of Microbiology, 1999
- Structure of a Plant Cell Wall Fragment Complexed to Pectate Lyase CPlant Cell, 1999
- Multiple open forms of ribose-binding protein trace the path of its conformational changeJournal of Molecular Biology, 1998