Cellulose biosynthesis and function in bacteria.
- 1 March 1991
- journal article
- review article
- Vol. 55 (1) , 35-58
Abstract
The current model of cellulose biogenesis in plants, as well as bacteria, holds that the membranous cellulose synthase complex polymerizes glucose moieties from UDP-Glc into beta-1,4-glucan chains which give rise to rigid crystalline fibrils upon extrusion at the outer surface of the cell. The distinct arrangement and degree of association of the polymerizing enzyme units presumably govern extracellular chain assembly in addition to the pattern and width of cellulose fibril deposition. Most evident for Acetobacter xylinum, polymerization and assembly appear to be tightly coupled. To date, only bacteria have been effectively studied at the biochemical and genetic levels. In A. xylinum, the cellulose synthase, composed of at least two structurally similar but functionally distinct subunits, is subject to a multicomponent regulatory system. Regulation is based on the novel nucleotide cyclic diguanylic acid, a positive allosteric effector, and the regulatory enzymes maintaining its intracellular turnover: diguanylate cyclase and Ca2(+)-sensitive bis-(3',5')-cyclic diguanylic acid (c-di-GMP) phosphodiesterase. Four genes have been isolated from A. xylinum which constitute the operon for cellulose synthesis. The second gene encodes the catalytic subunit of cellulose synthase; the functions of the other three gene products are still unknown. Exclusively an extracellular product, bacterial cellulose appears to fulfill diverse biological roles within the natural habitat, conferring mechanical, chemical, and physiological protection in A. xylinum and Sarcina ventriculi or facilitating cell adhesion during symbiotic or infectious interactions in Rhizobium and Agrobacterium species. A. xylinum is proving to be most amenable for industrial purposes, allowing the unique features of bacterial cellulose to be exploited for novel product applications.This publication has 87 references indexed in Scilit:
- Molecular structure of cyclic deoxydiadenylic acid at atomic resolutionBiochemistry, 1988
- β-Glucoside Activators of Mung Bean UDP-Glucose: β-Glucan SynthasePlant Physiology, 1988
- Export of Protein: A Biochemical ViewAnnual Review of Microbiology, 1987
- Initial Interactions of Agrobacterium Tumefaciens with Plant Host CellsCRC Critical Reviews in Microbiology, 1986
- Isolation and characterization of a new extracellular polysaccharide from a cellulose-negative strain of Acetobacter xylinumCanadian Journal of Microbiology, 1981
- β‐1,2‐Glucosyl transfer by membrane preparations from acetobacter xylinumFEBS Letters, 1979
- Regulation of Gluconeogenesis in Acetobacter xylinumEuropean Journal of Biochemistry, 1972
- Synthesis of cellulose by Sarcina ventriculiBiochimica et Biophysica Acta (BBA) - General Subjects, 1964
- Mutations in Escherichia coli that affect uridine diphosphate glucose pyrophosphorylase activity and galactose fermentationBiochimica et Biophysica Acta, 1963
- Factors affecting Production of Cellulose at the Air/ Liquid Interface of a Culture of Acetobacter xylinumJournal of General Microbiology, 1954